How Long Will Coronavirus Survive on Surfaces? – Health Essentials from Cleveland Clinic

While COVID-19 is believed to be spread mainly by inhaling droplets released when an infected person coughs or sneezes, these droplets can also land on surfaces. A healthy person can then unknowingly touch those surfaces and the next thing you know the virus has gotten a free ride to wherever and whatever the person touches next.

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Often times, peoples hands can transport the viral particles to different surfaces, even the face, where it can enter your body through your eyes, mouth or nose. (Hence why health officials are screaming at us not to touch our faces and to wash our hands.)

Still, viral particles are making their rounds. (Those mangy freeloaders!) We asked infectious disease specialist Frank Esper, MD, to weigh in on how long the coronavirus can survive on surfaces and what we should know to keep ourselves safe.

Thevirus typically doesnt like to live on surfaces that have a lot of holes ormicroscopic little grooves, nooks or crannies, explains Dr. Esper. It likes surfacesthat are very smooth, like door knobs.

Early research has demonstrated that the viruss survival depends on the type of surface it lands on. The live virus can survive anywhere between three hours and seven days, depending on the material.

Heres how long the virus typically lasts on common surfaces:

Its important to note that the amount of live virus decreases over time on surfaces. So the risk of infection from touching something that had the virus on it for a few days would lessen.

As you can imagine cardboard has little microscopic holes in it, so the virus doesnt like it very much, says Dr. Esper. And it doesnt last too long on fabric either, typically less than a day.

Viruses cant survive independently. The whole point of a virus is to invade a living host, hijack it and produce more virus babies.So when an infected person coughs and viral droplets land on surfaces around them, its not exactly the outcome that the virus had hoped for.

If a virus lands on something like a chair or table, it starts dying pretty quick, explains Dr. Esper. We may be able to find some viable virus after a few days, but its thousands of times less than what was originally deposited by the cough. As soon as the virus hits something thats not alive and certainly not a human, its not going to do very well.

So just because the virus is detectable on a surface doesnt necessarily mean that theres enough there to make someone sick. Scientists are still working to figure out what the infectious dose requirement is to actually cause an infection.

With online shopping and deliveries now reaching holiday-level busyness, you might be wondering if your mail or packages are carrying the coronavirus. Some people even let their mail or parcels sit for a few days before opening.

Paper and cardboard are very porous, says Dr. Esper. The virus doesnt like surfaces like that. It likes smooth, even things.

Coronavirus also doesnt particularly like to be out in the elements. Certainly, many viruses seem to circulate better in cold weather rather than warm weather, but if the virus is not in another person, its not going to do well.

Im not particularly concerned about catching the virus through the mail, says Dr. Esper. Were certainly studying it and well be able to understand a lot more as time goes on, but the answer is no, I dont think people need to be concerned about getting the virus through the mail.

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How Long Will Coronavirus Survive on Surfaces? - Health Essentials from Cleveland Clinic

Everyday Religion: What was the nature of the resurrected Jesus? – Winston-Salem Journal

Q: In the last column, you wrote about what Jesus did after he died. Was he a person or a spirit?

Answer: Christians have been thinking about the life, death and resurrection of Jesus since the beginning of Lent. The accounts of his post-resurrection activities are important to the question asked by the reader. What was the nature of the resurrected Jesus?

We have scriptural evidence that the resurrected Jesus was involved in human activities. They gave Jesus a piece of fish and some honeycomb, and He ate it, Luke 24:4243, says. According to Luke 24:39, Jesus said, Look at my hands and my feet. It is I myself! Touch me and see; a ghost does not have flesh and bones, as you see I have. And John 20:27, he said to doubting Thomas, Put your finger here; see my hands. Reach out your hand and put it into my side. Stop doubting and believe. When Jesus appeared and disappeared in several places, He baffled people and seemed to be a spirit. In some situations, it was strange that he was not recognizable by his disciples and Mary Magdalene. The faithful are led to believe that he maintained his physical body with spiritual powers or as Thomas Aquinas said, Christs body, though real, was glorified.

Paul believed that faithful humans could be born again with a spiritual body like Christ. He writes about the different kinds of bodies in 1 Corinthians 15:45-47, The first man Adam became a living being; the last Adam, a life-giving spirit. The spiritual did not come first, but the natural, and after that the spiritual. The first man was of the dust of the earth; the second man is of heaven.

Noted here are a few verses from 1 Corinthians 15:3554 to present a broader view of the question: How are the dead raised and with what kind of body? What you sow does not come to life unless it dies. When you sow, you do not plant the body that will be, but just a seed. God gives it a body as he has determined. It is raised in power. It is sown a natural body; it is raised a spiritual body. If there is a natural body, there is also a spiritual body. The dead will be raised imperishable. For the perishable must clothe itself with the imperishable, and the mortal with immortality. When the perishable has been clothed with the imperishable, and the mortal with immortality, then the saying that is written will come true, Death has been swallowed up in victory. For Paul, the resurrection was the foundation of the faith.

Q: Could you write more about the soul?

Answer: This answer will be a brief overview. The soul has been defined in several ways. Some people believe that it is the living being. Others belief that it is the part of a person that guides behavior, and it lives after the body dies. The concept of the soul could be 200,000 years old. Some Hindus and Buddhists believed in the immortal soul. In Jesus time, people believed in a resurrection after death not the immortality of the soul. In Genesis 2:7, we find, And God formed man of the dust of the ground, and breathed into his nostrils the breath of life; and man became a living soul. The word soul in some passages in the Bible simply meant life; however, did this verse mean that God gave man a soul?

The doctrine of a separate soul was a Greek concept. Socrates believed in the immortality of the soul of a virtuous person. He thought that the soul brings life and is imperishable. Plato believed in the immortality of the soul which had existed before the body. Later, Augustine thought the soul acknowledged truth; therefore, it was immortal. Some of the early Christians accepted the Greek idea that the soul was created by God and placed in the body at conception. Presently, Judaism, Christianity and Islam proclaim that immortality is achieved by the resurrection of the body on the day of judgment.

The immortality of the soul is a matter which is of so great consequence to us and which touches us so profoundly that we must have lost all feeling to be indifferent about it.

Pray that we understand our need to support and protect each other with guidance from God, health professionals and good common sense.

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Everyday Religion: What was the nature of the resurrected Jesus? - Winston-Salem Journal

True History of the Kelly Gang is all style – FanSided

Justin Kurzels True History of the Kelly Gang has great performances and sleek style, but not much to say of substance about the Australian outlaw.

Ned Kelly, a figure of Jesse James like stature in Australia, is a mostly murky figure. He was a bushranger and an outlaw who became an icon in his home country as much for his helmet and bulletproof armor as his lawlessness. But despite various attempts to put his story to screen, its not particularly clear what his deal is.True History of the Kelly Gangisnt going to change that.

The True History of the Kelly Gang is director Justin Kurzels take on the narrative and hes done his damndest to hit the marks of successful modern sensibilities: Dark, sexy, queer. Nicholas Hoult even lounges menacingly in nothing but garters. But despite strong performances and moments of greatness,Kelly Gang never coalesces, and it never figures out quite what it has to say about its legendary protagonist.

The film is based on the 2000 novelThe True History of the Kelly Gang and thus takes its historical accuracy cues nothing you are about to see is true from there. The first 40 minutes follow a young Ned (Orlando Schwerdt) as he comes of age on his familys backcountry farm, his dad (Ben Corbett) a drunk, his mom (Essie Davis) forced into sex work, a British sergeant (Charlie Hunnam) always lurking around, before hes sold to bushranger known as Harry Power (Russell Crowe). When Ned later returns home a young man (1917s George MacKay), family trouble and a sadistic British constable (Nicholas Hoult) set into motion a chain of events that lead Ned to outlaw immortality.

Without a doubt, the performances areKelly Gangs crown jewels. Crowe is wonderful, clearly having the time of his life as a mischievous bad influence, and Hunnam and Hoult both sink their teeth into their respective roles as villainous, occupying Brits. (Hoult, to be fair, gets the more extravagantly psychotic material; Hunnam more in magnanimous savior mode.)

As Ned, MacKay does his best with a character weve pretty much seen before. Hes a man forced to violence out of a sense of familial responsibility foisted on him too young with a bottomless well of both mommy and daddy issues while devolving increasingly into manic madness and self-mythologizing because surprise! he has a sensitive streak. The best of MacKays performance is bracingly, intensely physical, but his most impressive scene may be the one of the more vulnerable moments Ned shares with an English teacher hostage.

But, with all due respect to MacKay, Davis is the films true star as Kelly matriarch Ellen. Shes a magnetic and terrifying piece of work and you never for one second doubt her power to keep all these men truly, every single one of them under her sway. From an innuendo-laden dinner conversation to a jail cell confrontation, Davis electrifies every scene shes in.

In addition to stellar performances, Kelly Gangalso has moments of true beauty, stunningly composed shots leveraging the full visual power of the Australian bush and the dramatic, eye-catching aesthetic embraced by the outlaws.

However, as a sum of these parts,The True History of the Kelly Ganglacks cohesion, momentum and ultimately, impact. Neds glaring parental problems its no surprise to learn Kurzel directed MacKay to approach scenes with Davis like he would a romantic partner arent particularly interesting, nor really is his quasi-romance or motivating conflict. The story simply drags, feeling much longer than its two-hour runtime.

Furthermore, for film lauded as gender-bending, transgressive and queer, it falls short of committing to any of those three things. The party line for why the men wear dresses into battle is that men are afraid of what they dont understand and men fear crazy. If his father, brother or any of the men in Neds gang are motivated otherwise, its not made text. And despite all the codifiers of intimacy and a romantic relationship between Ned and his best friend Joe (Sean Keenan) not to mention overwhelming sexual tension between Ned and Fitzpatrick in their first meeting plausible deniability abounds. (That said, the other lines of sexual attraction inKelly Gangare a Pandoras box of Oedipal complexes, pedophilia and power trips so maybe Ned and Joe are well enough left alone.)

Ultimately,Kelly Gangdoes not seem know what to do (or what it wants to do) with all the imagery, aesthetic and cultural signifiers it references. For all the monologues and speeches, theres no real sense of how the film understands Ned and his legacy or how a gender-bending punk rock veneer might elucidate some valuable truth about his story. Its sleek and stylish, and then its over.

There is a sharp, bold and visually stunning telling of the Ned Kelly myth somewhere in The True History of the Kelly Gang, but in the end, its too long, too uncertain and too flat to be legendary.

True History of the Kelly Gang is available on digital and on demandApril 24.

For more, explore the Reviews section at FanSided.com.

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True History of the Kelly Gang is all style - FanSided

Voices of Ruin post new live video for "The Undoing" – Next Mosh

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West coast melodic death metal act Voices of Ruin have posted a new live video for their track titled The Undoing, which appears on their new LP on M-Theory Audio, Path to Immortality (due May 15th). The clip was filmed at Wacken Open Air last year.

Says vocalist David Barrett:

The Undoing was the first song that was written for our new album, and its been part of our setlist for some time now. It has evolved a little from when we first wrote it, and the crushing production brought the song to the next level! Rafael (Ortega of Ecliptic Visions Productions) did a great job blending the footage of us performing the song to make a cool music/live video. There are also some audio clips in the beginning and at the end, including Eric Dow (Wacken Metal Battle USA, Helsott) announcing us as we began our set. Wacken was a dream come true, and to be able to release the live footage along with the premiere of The Undoing at the same time is perfect! We cant wait for fans to hear the rest of the new album!

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Voices of Ruin post new live video for "The Undoing" - Next Mosh

Wasilla couple who contracted COVID-19 on cruise ship is grateful to have recovered – Anchorage Daily News

When Susie Schaefer of Wasilla first fell ill, it was just a headache and a fever.

She and her husband, Dave, were on board the Coral Princess cruise ship and headed for Miami, where they hoped to finally disembark. As COVID-19 broke out across the world, ports closed and turned the cruise ship away, leaving passengers unclear about when or how they would return home.

Within days, Schaefers temperature had skyrocketed so high that her body shook and she couldnt even think clearly.

I know my fever was bad enough that I was not making any sense, she said. My husband was trying to have a conversation with me and I think the only word I was able to say to him was fish, and I have no idea why, but that was my answer to everything.

Her body surged with so much pain that Tylenol didnt even put a dent in it, she said. The illness was unrelenting and like nothing 59-year-old Schaefer had ever felt before.

It was like being demonically possessed by a honey badger, she said. You just felt so bad.

Doctors on the ship told Schaefer to hold tight. There wasnt much they could do for her until they docked.

The couple had boarded the cruise ship at the beginning of March and was eager to spend 32 days seeing new places. At the time, they werent worried about the virus.

The first few weeks of the cruise went great they saw penguins in the Falkland Islands and made friends with others on board. But by the end of the month, passengers began to fall ill and everyone was ordered to quarantine in their rooms.

The Schaefers celebrated their 31st wedding anniversary in quarantine.

Several people died before the ship reached Miami on April 4. Susie Schaefer said she could see several others being taken from the ship in ambulances.

When the doctor came to her room on April 5, he was outfitted in a hazmat suit. She and another passenger were taken to a nearby hospital, where they waited in a tent outside for several hours before they were tested for COVID-19. She was then told that she was free to go, and the hospital would not be admitting her.

The cruise company sent a car to pick Schaefer up and placed her in a Miami hotel room. Her husband wasnt yet allowed off the boat. Schaefer was sick, alone and unsure about what would come next.

That was terrifying to me, she said. When I had my high fever and when I was delirious, my body was shaking so hard that I could not stand up by myself. When my husband was in the cabin with me, he could lay next to me and hold me to keep me warm to stop the chills. He could get me Tylenol and he would make sure that I drank enough. I was afraid in that hotel room, that if I got delirious, if my fever spiked, if I fell down, no one would know. There was no one there to know.

Good news came a few days later when Dave sent her a photo of the charter plane tickets. Cruise ship passengers were barred from flying on commercial flights because of the risk of transmitting COVID-19, but the company chartered an eight-person jet to take the Schaefers and five other passengers to Seattle.

When I got to the airfield and I saw them coming up in the bus, and it stopped and Dave came out oh my gosh, that to me, it was like every mushy romantic scene in the movies," she said. "There he was: Hes wearing his mask, hes wearing his glasses, hes coming toward me with his arms open. I just cried.

From Seattle, the Wasilla couple transferred to another small plane and flew to Anchorage.

Susie and Dave Schaefer returned home to a sign and food on their doorstep from friends and neighbors. The couple contracted COVID-19 while on board the Coral Princess cruise ship. (Photo by Susie Schaefer)

The cruise company arranged for a limousine to pick them up from the Ted Stevens Anchorage International Airport and bring them to their front door, where friends had left a welcome home sign and food.

Schaefer said shes been amazed by the kindness from friends and neighbors who delivered supplies for the last few weeks as they recovered. Officials from the health department checked on them twice daily over the phone and monitored their symptoms. When Susie Schaefers COVID-19 test came back positive, Dave went to a drive-thru testing facility in the Valley. He had also contracted the virus.

Susie Schaefer worried that Dave, who is 72, would have a harder time recovering, but said she is thankful he had milder symptoms than she did. As the days went on, their symptoms waned.

The couple was cleared by the state Department of Health and Social Services on Wednesday and declared recovered.

Schaefer said shes felt a sort of survivors guilt, knowing there were others on the same ship who did not survive the virus and also knowing that so many people are still living in fear.

She said she worries about a second round of illnesses happening as businesses begin to reopen, but she also understands how much the virus has hurt families financially.

This can boomerang. We still need to practice the personal distancing and the safety precautions," she said. I think its also very important to reach out to people that you havent spoken to or you havent seen, she said, adding that while others may not be physically sick, they may be struggling with the isolation of sheltering in place.

Schaefer said she never thought shed contract the virus and said its important that others continue to follow guidelines because its not always obvious that someone has COVID-19.

I guess I had a sense of immortality or invulnerability oh, this wont touch me, Im gonna wash my hands, Im going to avoid people that are coughing, Im going to use sanitizer, Im going to hydrate, Im not going to touch things I thought I was being safe. I did everything that I knew to do to be safe, but its sneaky. You dont see it coming.

Schaefer said shes happy to be home and grateful to be healthy again. The couple plans to donate their plasma for antibody research when they become eligible in the next few weeks.

It was scary because we heard of so many deaths and so many going on ventilators, and why we escaped that, I dont know its got to be a prayer from God," she said. "I have no logical reason for it ... but Im so grateful that we didnt.

[Because of a high volume of comments requiring moderation, we are temporarily disabling comments on many of our articles so editors can focus on the coronavirus crisis and other coverage. We invite you to write a letter to the editor or reach out directly if youd like to communicate with us about a particular article. Thanks.]

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Wasilla couple who contracted COVID-19 on cruise ship is grateful to have recovered - Anchorage Daily News

Katana’s Soultaker vs. Magik’s Soulsword: Which is the Better Blade? – CBR – Comic Book Resources

The Marvel and DC Universe are filled with all kinds of magical weapons, many of which hold potent, powerful supernatural elements. While all of these weapons can be lethal when wielded by the right heroes or villains, Katana of DC's Outsiders and Suicide Squad and Magik from the X-Men and the New Mutants.

Now, we're taking a closer look at the bloody histories of Magik's Soulsword and Katana's Soultaker to see which supernatural blade reigns supreme.

RELATED:X-Men: Prof. X Only Lets Resurrection 'Fix' Mutants for One MESSED-UP Reason

The Soulsword was created by Magik while the young mutant was trapped in Limbo. Using her own life force to empower the spell, Illyana was able to manifest the sword from her own spirit. While the sword was introduced as a simple blade, the design of the weapon shifts and becomes more intricate and powerful with each use. The blade will also sometimes create a magical armor around the user when they need it.

The sword also technically comes with sovereignty over the demonic realm, Limbo. The sword can be used as a typical weapon, but it can also be used to sever and destroy magical spells. After the death of Illyana, the sword traded hands multiple times -- ending up briefly in the respective hands of Shadowcat, Nightcrawler and Amanda Sefton -- before Illyana was restored to life following the events of X-Infernus and reclaimed it.

RELATED: Suicide Squad Director Admits to Harley Quinn Mistakes

Katana is a gifted warrior in many respects, and she's accordingly adept with numerous weapons. However, her greatest skills like with the Soultaker Sword. In the Post-CrisisDC Universe, the blade was forged by the 14th-century swordmaster, Muramasa. The sword is exceptionally sharp, capable of even slicing through otherwise durable substances. However, the most fearsome aspect of the Soul Sword is its capability to absorb the souls of the people it kills and traps them within itself.

The wielder of the blade can then force the spirits to serve them, even against their will. In the post-Flashpoint version of the DC Universe, this includes Katana's dead husband, and Katana speaks to his spirit through the blade. The sword is also suggested to be the Sword Totem, which means the blade can also potentially give the wielder immortality.

RELATED: X-Men: The Omega-Level Mutants Who STILL Aren't On Krakoa

Both the Soulsword and the Soultaker come with unique attributes that make them fearsome tools in the right hands. But they also come with unique powers that make them specifically more potent against other specific foes. Both blades are shown being capable of slicing through most elements, which makes them useful in most situations. However, the Soultaker is better suited to contend with enemies who possess souls, thus allowing Katana to kill them and use their spirits as her servants. Meanwhile, the Soulsword is shown to be more versatile in slicing through magical enchantments and spells. This means the Soulsword could be used in more intense moments, especially when confronted with magical threats.

Another element that makes the Soulsword particularly powerful is the power it gives the user over the realm of Limbo. Once taking the blade, owners are able to use the sword to command the various beings of the hellish realm. This gives the owner a veritable army of demonic figures at their beck and call. Even villains like Doctor Doom have done everything they could to claim the sword and take control of Limbo for themselves, which hints at the potential power that control could afford. So while the Soulsword might be an effective tool to bring down human foes, the pure power and versatility of the Soulsword make it a considerably more impressive weapon.

KEEP READING: Black Lightning's Deadly Alliance May Doom The Outsiders

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Katana's Soultaker vs. Magik's Soulsword: Which is the Better Blade? - CBR - Comic Book Resources

What it’s like to invent a coronavirus vaccine in the middle of a pandemic – CNBC

For 42-year-old Hannu Rajaniemi, the decision to shift his synthetic biology start-up's focus from creating cancer therapeutics to making a Covid-19 vaccine brought a sense of calm. Because watching coronavirus infect the world and not being part of the solution caused the scientist more torment than the complicated task of creating a vaccine in the middle of a pandemic.

"Before March the 10th, before we decided to jump on this, I was definitely feeling very anxious very, very worried about what was coming," Rajaniemi tellsCNBC Make It. "This is of course before things started to get really bad, but yeah there was some sense of powerlessness and worry that was in the background.

"Once we jumped on [creating a vaccine] that actually went away."

On that day, Rajaniemi was speaking in New Brunswick, New Jersey at a large biopharma companyabout the future of the industry. The company, which Rajaniemi declined to name, has a robust Covid-19 response program, and being there got Rajaniemi thinking his company's research could be applicable to fighting the virus.

So from March 10 through March 16, Rajaniemi pivoted his Cambridge, Massachusetts-headquarteredbusiness, Helix Nanotechnologies,from working to build a cancer vaccine to inventing a vaccine against SARS-CoV-2, the virus that causes Covid-19.

Within a week, "we had a significant amount of funds committed [to fund the Covid-19 vaccine research], we had a plan and we essentially completely shifted focus," Rajaniemi tells CNBC Make It.

The week it took for Helix Nano to shift gears "was pretty intense,"Rajaniemi tells CNBC Make It.

He didn't track his hours, but Rajaniemi remembers working through the night at least once.

Helix Nano was able to raise money from its "extremely supportive" investors for the pivot in about about 24 hours, he says.

The Helix Nano team dressed for a charity event, before the Covid-19 pandemic. Left to right:Taylor Gill, Nikhil Dhar, Nikolai Eroshenko (a co-founder), Hannu Rajaniemi (also a co-founder), Marianna Keaveney. (Photo is missing a more recent addition to the team, Justin Quinn.)

Photo courtesy: Helix Nano

Since the biotechnology Helix Nano was working on was flexible enough to also work for viruses, "we were able to articulate an accelerated path to the company's original mission push the technology forward rapidly while fighting the pandemic, then bring it back to cancer," he said. According to Rajaniemi, one investor said the Covid-19 pandemic "could be THE opportunity you needed" to show what the team can really accomplish.

As for his six employees, Rajaniemi inspired them to get behind the change by focusing on the broader benefit to society that a Covid-19 vaccine could provide. (Covid-19 is "rapidly becoming America's leading cause of death," according to The Washington Post from April 6 to April 12, for example,more people died from Covid-19 than cancer.)

"This is not a side project, or a way to get some extra money from investors in a crisis: This is the mission," Rajaniemi says he told his staff. "It might be the most important thing any of us ever do."

And it is "quite empowering" to be working on something that could help the world, Rajaniemi says. "There is this strong sense of clarity.... This is what we have to focus on. And so I think that's actually made it easier."

Helix Nano's technology made for a fairly easy pivot.

Rajaniemi, who was born and raised in Finland, founded Helix Nanotechnologies in 2013 with small angel checks from friends and family as well as grants to focus on cancer therapeutics.

And the business was personal: In 2015, Rajaniemi lost his 67-year-old mother to metastatic breast cancer.

From there, Helix Nano was accepted into Silicon Valley accelerator Y Combinator in 2017 and raised money from various sources includingStarlight Ventures and the Data Collective.

Some of the work Helix Nano was doing toward a cancer drug had already been showing "very promising efficacy in human lung cancer tumors engrafted into mice" before the pandemic, says Rajaniemi. "We were about to start raising a Series A on that data. The next fundraise would have taken us just short of human clinical trials."

The work centered around manipulating messenger ribonucleic acid (mRNA), or genetic code that acts as a messenger in the human body. Helix Nanotechnology's strategy for generating a novel coronavirus vaccine also centers on mRNA.

Helix Nanotechnology's cancer drug would have mRNA deliver a message to kill cancers cells andattract immune cells to the tumor. Its cancer vaccine would use mRNA deliver a message to make a cancer cell more visible to the human body's immune system so that it could attack the cancer.

The idea behind that cancer vaccine is the same as Helix Nano's Covid-19 vaccine, except that the vaccine against SARS-CoV-2 goes after the virus instead of cancer cells, says Rajaniemi.The mRNA delivers a message to make parts of the novel coronavirus visible to the immune system.

Helix Nano lab in Cambridge, Mass.

Photo courtesy Helix Nano

Because mRNA is manipulated the same way, "regardless of the instructions it contains," Helix Nanotechnologies had to change no infrastructure or hardware in its lab to transition from working on cancer therapeutics to a SARS-CoV-2 vaccine, Rajaniemi says.

"It's like computer code that can be easily changed and iterated with. Before we were making mRNA and injecting into mice, and measuring the results. Now we are also making mRNA and injecting it into mice," he says.

"That was part of the attraction," according to Rajaniemi.

Rajaniemi believes that the vaccine he and his team are creating is important because he says it is different from other novel coronavirus vaccines in the works. (There aremore than 40 SARS-CoV-2 vaccines currently under development, according tovaccine consultant Stanley Plotkin, whoinvented the rubella vaccine in 1964.)

Rajaniemi explains vaccine technology with a metaphor: "A vaccine is like a mug shot that you show the immune system" by injecting it into the body. "So it's a picture of the bad guy that the immune system goes after," he says.

A potential problem, however, is that viruses mutate, which means a specific "mug shot" might no longer look like the mutated "bad guy" the immune system needs to fight.

So one of the approaches Helix Nano is pursuing "amounts to essentially showing so many mug shots from so many different angles that, no matter how the virus changes, it will be very hard for it to completely disguise itself [from] the immune system," Rajaniemi says. The idea is akin to flooding the system with mugshots a "saturation," Rajaniemi calls it.

"While SARS-CoV-2 appears to be mutating more slowly than, say, influenza, we can't discount the possibility that as the virus changes, the first wave of vaccines may lose efficacy," he says.

"The approach we are developing should be robust against this, and may even provide protection from all future coronaviruses. So we want to help solve this problem once and for all, not just for this pandemic but future ones as well."

Indeed, producing a vaccine that can identify and protect against multiple potential mutations of the virus "will be of critical importance," says vaccine specialistBarbara Rath, the co-founder and chair of The Vienna Vaccine Safety Initiative.

"If we can, we'd like to end up with a vaccine that will protect us not only from one specific pandemic coronavirus, but from other variants of SARS-CoV, MERS-CoV, as well," she says, referring to the coronaviruses that cause Severe Acute Respiratory Syndrome (SARS) and Middle East Respiratory Syndrome (MERS).

"Whether or not this is possible ... is not yet entirely clear, but it is feasible," Rath says.

On April 3, Helix Nanotechnologies injected its first novel coronavirus vaccines into miceto see if there is an immune response, and over the course of a few weeks it will be testing hundreds more vaccine designs by injecting them into mice.

In two to three months, its vaccines could be ready to move to clinical trials in humans, Rajaniemi says.

That means the now familiar 12- to 18-month timeframe "is probably realistic" for getting a vaccine to market, Rajaniemi says (though he personally believes that can be accelerated).

The timeframe also depends on whether the Food and Drug Administration hastens its approval process for vaccines and how much manufacturing capacity there is to produce the vaccine. (Vaccine expert Plotkin says there is currently enough capacity to produce a vaccine for the United States, but not for the world population, though the Bill and Melinda Gates Foundation recently pledged to invest in manufacturing infrastructure.)

In the meantime, Rajaniemi, who as a theoretical physicist does not have to work in the lab, is in constant touch with his team in Cambridge while workingsix to seven days a week from his home in San Francisco, he says.

But then, he wasn't expecting it to be easy.

"It's certainly been quite intense it feels like we've jumped off a cliff and are building an airplane in mid-air," Rajaniemi says.

See also:

These are the new hot spots of innovation in the time of coronavirus

Bill Gates: How the coronavirus pandemic can help the world solve climate change

COVID-19 pandemic proves the need for 'social robots,' 'robot avatars' and more, say experts

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What it's like to invent a coronavirus vaccine in the middle of a pandemic - CNBC

Scientists Shave The Legs Of Spiders To Create Anti-Adhesive Nanotechnology – IFLScience

Researchers investigating cribellate spiders have discovered a unique comb structure thatcould help inform future equipment used to manipulate nanofibers. Nanofibers have been hard to handle in a lab setting as they can stick to the equipment attempting to manipulate them, but a new study published in the journal ACS Applied Nanomaterials reveals how spiders can help us to create non-stick tools for such scenarios.

Cribellate spiders are so named because of their unique web-spinning anatomy. Most spiders have a long single spinneret that they use to produce a single thread, whereas cribellate spiders have a silk-spinning organ. This organ acts like a plate with lots of small, ever so slightly raised protrusions, each of which produces a very fine silk just a few nanometers thick. The spiders then comb these thin fibers out using a calamistrum structure on their legs, producing silk with a woolly texture. This woolly-textured silk entraps the spiders prey, but somehow, they are able to handle it without getting caught up in their own webs.

Nanofibers are a hot area of research right now but one of the difficulties in their handling is that they commonly stick to the equipment trying to manipulate them. Lead author Anna-Christin Joel, from RWTH Aachen University, and her colleagueswondered if the solution to this frustrating problem could be found within the silk-immune spiders anatomy.

Having identified the calamistrum comb as a key feature of the spiders spinning abilities, they decided to see what happened when this was shaved off. They observed that the silky-smooth, calamistrum-free spiders soon saw a buildup of nanofibers on their legs. Taking a closer look at the calamistrum, it was discovered that the surface of the comb was covered in fingerprint-like nanoripples thatprevent the nanofibers from making contact with the combs surface.

They decided to try and replicate this non-stick surface by lasering similar patterns to those seen on the calamistrum comb onto poly(ethylene terephthalate) (PET) foils, which they then coated with gold. When tested for its anti-sticking properties, the artificial comb performed almost as well as the spiders.

While the anti-adhesive surface is still being perfected, its hoped the discovery could provide a solution for handling sticky synthetic nanomaterials and nanofibers, making future research and innovation far easier.

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Scientists Shave The Legs Of Spiders To Create Anti-Adhesive Nanotechnology - IFLScience

Nanotechnology in Agriculture Market 2020 to Perceive Biggest Trend and Opportunity by 2027 – Bandera County Courier

This Nanotechnology in Agriculture report comprises of a deep knowledge and information on what the markets definition, classifications, applications, and engagements and also explains the drivers and restraints of the market which is derived from SWOT analysis. An analytical assessment of the competitors confers clear idea of the most important challenges faced by them in the present market and in upcoming years. Besides, the identity of respondents is also kept undisclosed and no promotional approach is made to them while analyzing the data. Global Nanotechnology in Agriculture market research document covers major manufacturers, suppliers, distributors, traders, customers, investors and major types, major applications.

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Geographically, the globalNanotechnology in Agriculturemarket has been fragmented across several regions such asNorth America, Latin America, Asia-Pacific, Africa, and Europe. The study enlists various market key players in order to present a clear idea about different strategies undertaken by top-notch companies. Inclusive of in-depth analysis of market dynamics such as drivers, restraints and global opportunities, the study provides a cogent study about the fluctuating highs and lows of the businesses. Several market parameters are also stated while curating the research report, these include investors, share market and budget of the companies.

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Professional Student of the Year recipient uses nanotechnology to create clean water – KSU | The Sentinel Newspaper

KSU's Department of Mechanical Engineering named senior Ian Durr Professional Student of the Year after completing work with his mentor on a research-intensive nanotechnology project. Photo credit: Photo Courtesy of Hillary Joy Photography

Kennesaw States Department of Mechanical Engineering named senior mechanical engineering major Ian Durr the Professional Student of the Year in early February after conducting nanotechnology research to provide clean water.

For a little over a year, Durr said he has been working with his mentor, KSU Assistant Professor of mechanical engineering Jungkyu Park, on a research-intensive nanotechnology project.

We simulate carbon 3D nanostructures in the use of desalination of salt water, Durr said. The research project makes clean water in an environmentally friendly method and it inadvertently reduces the cost of operation too.

Initially, Durr was drawn towards the aerospace field like his father, who was his first role model. Over time, Durr unexpectedly discovered his own passion at KSU.

I wanted to become more involved in the success of the project as it had a global outreach and a worthy cause, Durr said. One of the goals was to provide clean drinking water in less privileged third world countries. Helping society and making a difference in peoples lives are things that resonated with me immediately.

Durr said he could not be more appreciative of KSU, as the school provided him the mentors, resources, materials and opportunities to grow personally and professionally.

Durr found his first co-op job at the KSU career fair with WorkingBuildings, a consulting firm based in Midtown Atlanta. He went on to complete three co-op rotations at the same firm.

As a role model for other students, Durrs passion and determination to succeed helped him achieve his goals. Durr shared that he was an inquisitive student in every class and engaged with his professors until he had a deeper understanding of the subject.

A valuable lesson I want other students to know is that, as a student, you have to give it your all and be passionate about your studies and the content, Durr said. Do not be hard on yourself for not getting that 4.0 GPA. The grades will come and results will follow if students focus on getting the knowledge first.

Emphasizing how students should explore various avenues in engineering, Durr explained how he came out of the program with more engineering experience in healthcare, rather than aerospace.

Durr said he observed that engineers do not get the recognition they deserve in healthcare. When someone goes into a hospital, they think of doctors and nurses, but engineers play an important role as well.

In my role as a co-op engineer, some of my responsibilities included certifying labs in Manhattan where the CDC is currently conducting tests for the coronavirus, Durr said. I checked fire dampers in healthcare facilities in Atlanta to make sure they were up to standard code.

While Durr feels a sense of pride that comes from being recognized by his mentors, coworkers and fellow students, he knows he has more to achieve. In the future, he wants to continue making a difference in peoples lives.

WorkingBuildings has offered him a full-time position upon graduation as an Associate Commissioning Authority, Durr said.

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Professional Student of the Year recipient uses nanotechnology to create clean water - KSU | The Sentinel Newspaper

Nanotechnology in Drug Delivery Market Growing Technology Trends and Business Opportunities by 2025 – Jewish Life News

ReportsWeb delivers well-researched industry-wide information on the Nanotechnology in Drug Delivery market. It studies the markets essential aspects such as top participants, expansion strategies, business models, and other market features to gain improved market insights. Additionally, it focuses on the latest advancements in the sector and technological development, executive tools, and tactics that can enhance the performance of the sectors.

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Potential Impact of COVID-19 on Nanotechnology in Medical Equipment Market | Growth Drivers, Business Strategies and Future Prospects 2026 – Jewish…

Due to the pandemic, we have included a special section on the Impact of COVID 19 on the Nanotechnology in Medical Equipment Market which would mention How the Covid-19 is Affecting the Nanotechnology in Medical Equipment Industry, Market Trends and Potential Opportunities in the COVID-19 Landscape, Covid-19 Impact on Key Regions and Proposal for Nanotechnology in Medical Equipment Players to Combat Covid-19 Impact.

The Global Nanotechnology in Medical Equipment Market has been garnering remarkable momentum in the recent years. The steadily escalating demand due to improving purchasing power is projected to bode well for the global market. QY Researchs latest publication, Titled [Nanotechnology in Medical Equipment Market Research Report 2020], offers an insightful take on the drivers and restraints present in the market. It assesses the historical data pertaining to the global Nanotechnology in Medical Equipment market and compares it to the current market trends to give the readers a detailed analysis of the trajectory of the market. A team subject-matter experts have provided the readers a qualitative and quantitative data about the market and the various elements associated with it.

Global Nanotechnology in Medical Equipment Market is valued at USD XX million in 2020 and is projected to reach USD XX million by the end of 2026, growing at a CAGR of XX% during the period 2020 to 2026.

Top Key Players of the Global Nanotechnology in Medical Equipment Market:Stryker Corporation, 3M, Abbott, Thermo Fisher Scientific, PerkinElmer, Inc., Starkey Hearing Technologies, Smith + Nephew, Dentsply International, Mitsui Chemicals, Inc., AAP Implantate AG

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The Essential Content Covered in the Global Nanotechnology in Medical Equipment Market Report:Top Key Company Profiles.Main Business and Rival InformationSWOT Analysis and PESTEL AnalysisProduction, Sales, Revenue, Price and Gross MarginMarket Size And Growth RateCompany Market Share

Global Nanotechnology in Medical Equipment Market Segmentation By Product:Active Implantable Medical Equipments, Biochip, Portable Material

Global Nanotechnology in Medical Equipment Market Segmentation By Application:Treatment Using, Diagnostic Using, Research Using

In terms of region, this research report covers almost all the major regions across the globe such as North America, Europe, South America, the Middle East, and Africa and the Asia Pacific. Europe and North America regions are anticipated to show an upward growth in the years to come. While Nanotechnology in Medical Equipment Market in Asia Pacific regions is likely to show remarkable growth during the forecasted period. Cutting edge technology and innovations are the most important traits of the North America region and thats the reason most of the time the US dominates the global markets.Nanotechnology in Medical Equipment Market in South, America region is also expected to grow in near future.

Key questions answered in the report*What will be the market size in terms of value and volume in the next five years?*Which segment is currently leading the market?*In which region will the market find its highest growth?*Which players will take the lead in the market?*What are the key drivers and restraints of the markets growth?

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Table of Content

1 Report Overview1.1 Study Scope1.2 Key Market Segments1.3 Players Covered: Ranking by Nanotechnology in Medical Equipment Revenue1.4 Market Analysis by Type1.4.1 Global Nanotechnology in Medical Equipment Market Size Growth Rate by Type: 2020 VS 20261.4.2 Active Implantable Medical Equipments1.4.3 Biochip1.4.4 Portable Material1.5 Market by Application1.5.1 Global Nanotechnology in Medical Equipment Market Share by Application: 2020 VS 20261.5.2 Treatment Using1.5.3 Diagnostic Using1.5.4 Research Using1.6 Coronavirus Disease 2019 (Covid-19): Nanotechnology in Medical Equipment Industry Impact1.6.1 How the Covid-19 is Affecting the Nanotechnology in Medical Equipment Industry1.6.1.1 Nanotechnology in Medical Equipment Business Impact Assessment Covid-191.6.1.2 Supply Chain Challenges1.6.1.3 COVID-19s Impact On Crude Oil and Refined Products1.6.2 Market Trends and Nanotechnology in Medical Equipment Potential Opportunities in the COVID-19 Landscape1.6.3 Measures / Proposal against Covid-191.6.3.1 Government Measures to Combat Covid-19 Impact1.6.3.2 Proposal for Nanotechnology in Medical Equipment Players to Combat Covid-19 Impact1.7 Study Objectives1.8 Years Considered

2 Global Growth Trends by Regions2.1 Nanotechnology in Medical Equipment Market Perspective (2015-2026)2.2 Nanotechnology in Medical Equipment Growth Trends by Regions2.2.1 Nanotechnology in Medical Equipment Market Size by Regions: 2015 VS 2020 VS 20262.2.2 Nanotechnology in Medical Equipment Historic Market Share by Regions (2015-2020)2.2.3 Nanotechnology in Medical Equipment Forecasted Market Size by Regions (2021-2026)2.3 Industry Trends and Growth Strategy2.3.1 Market Top Trends2.3.2 Market Drivers2.3.3 Market Challenges2.3.4 Porters Five Forces Analysis2.3.5 Nanotechnology in Medical Equipment Market Growth Strategy2.3.6 Primary Interviews with Key Nanotechnology in Medical Equipment Players (Opinion Leaders)

3 Competition Landscape by Key Players3.1 Global Top Nanotechnology in Medical Equipment Players by Market Size3.1.1 Global Top Nanotechnology in Medical Equipment Players by Revenue (2015-2020)3.1.2 Global Nanotechnology in Medical Equipment Revenue Market Share by Players (2015-2020)3.1.3 Global Nanotechnology in Medical Equipment Market Share by Company Type (Tier 1, Tier 2 and Tier 3)3.2 Global Nanotechnology in Medical Equipment Market Concentration Ratio3.2.1 Global Nanotechnology in Medical Equipment Market Concentration Ratio (CR5 and HHI)3.2.2 Global Top 10 and Top 5 Companies by Nanotechnology in Medical Equipment Revenue in 20193.3 Nanotechnology in Medical Equipment Key Players Head office and Area Served3.4 Key Players Nanotechnology in Medical Equipment Product Solution and Service3.5 Date of Enter into Nanotechnology in Medical Equipment Market3.6 Mergers & Acquisitions, Expansion Plans

4 Breakdown Data by Type (2015-2026)4.1 Global Nanotechnology in Medical Equipment Historic Market Size by Type (2015-2020)4.2 Global Nanotechnology in Medical Equipment Forecasted Market Size by Type (2021-2026)

5 Nanotechnology in Medical Equipment Breakdown Data by Application (2015-2026)5.1 Global Nanotechnology in Medical Equipment Market Size by Application (2015-2020)5.2 Global Nanotechnology in Medical Equipment Forecasted Market Size by Application (2021-2026)

6 North America6.1 North America Nanotechnology in Medical Equipment Market Size (2015-2020)6.2 Nanotechnology in Medical Equipment Key Players in North America (2019-2020)6.3 North America Nanotechnology in Medical Equipment Market Size by Type (2015-2020)6.4 North America Nanotechnology in Medical Equipment Market Size by Application (2015-2020)

7 Europe7.1 Europe Nanotechnology in Medical Equipment Market Size (2015-2020)7.2 Nanotechnology in Medical Equipment Key Players in Europe (2019-2020)7.3 Europe Nanotechnology in Medical Equipment Market Size by Type (2015-2020)7.4 Europe Nanotechnology in Medical Equipment Market Size by Application (2015-2020)

8 China8.1 China Nanotechnology in Medical Equipment Market Size (2015-2020)8.2 Nanotechnology in Medical Equipment Key Players in China (2019-2020)8.3 China Nanotechnology in Medical Equipment Market Size by Type (2015-2020)8.4 China Nanotechnology in Medical Equipment Market Size by Application (2015-2020)

9 Japan9.1 Japan Nanotechnology in Medical Equipment Market Size (2015-2020)9.2 Nanotechnology in Medical Equipment Key Players in Japan (2019-2020)9.3 Japan Nanotechnology in Medical Equipment Market Size by Type (2015-2020)9.4 Japan Nanotechnology in Medical Equipment Market Size by Application (2015-2020)

10 Southeast Asia10.1 Southeast Asia Nanotechnology in Medical Equipment Market Size (2015-2020)10.2 Nanotechnology in Medical Equipment Key Players in Southeast Asia (2019-2020)10.3 Southeast Asia Nanotechnology in Medical Equipment Market Size by Type (2015-2020)10.4 Southeast Asia Nanotechnology in Medical Equipment Market Size by Application (2015-2020)

11 India11.1 India Nanotechnology in Medical Equipment Market Size (2015-2020)11.2 Nanotechnology in Medical Equipment Key Players in India (2019-2020)11.3 India Nanotechnology in Medical Equipment Market Size by Type (2015-2020)11.4 India Nanotechnology in Medical Equipment Market Size by Application (2015-2020)

12 Central & South America12.1 Central & South America Nanotechnology in Medical Equipment Market Size (2015-2020)12.2 Nanotechnology in Medical Equipment Key Players in Central & South America (2019-2020)12.3 Central & South America Nanotechnology in Medical Equipment Market Size by Type (2015-2020)12.4 Central & South America Nanotechnology in Medical Equipment Market Size by Application (2015-2020)

13Key Players Profiles13.1 Stryker Corporation13.1.1 Stryker Corporation Company Details13.1.2 Stryker Corporation Business Overview and Its Total Revenue13.1.3 Stryker Corporation Nanotechnology in Medical Equipment Introduction13.1.4 Stryker Corporation Revenue in Nanotechnology in Medical Equipment Business (2015-2020))13.1.5 Stryker Corporation Recent Development13.2 3M13.2.1 3M Company Details13.2.2 3M Business Overview and Its Total Revenue13.2.3 3M Nanotechnology in Medical Equipment Introduction13.2.4 3M Revenue in Nanotechnology in Medical Equipment Business (2015-2020)13.2.5 3M Recent Development13.3 Abbott13.3.1 Abbott Company Details13.3.2 Abbott Business Overview and Its Total Revenue13.3.3 Abbott Nanotechnology in Medical Equipment Introduction13.3.4 Abbott Revenue in Nanotechnology in Medical Equipment Business (2015-2020)13.3.5 Abbott Recent Development13.4 Thermo Fisher Scientific13.4.1 Thermo Fisher Scientific Company Details13.4.2 Thermo Fisher Scientific Business Overview and Its Total Revenue13.4.3 Thermo Fisher Scientific Nanotechnology in Medical Equipment Introduction13.4.4 Thermo Fisher Scientific Revenue in Nanotechnology in Medical Equipment Business (2015-2020)13.4.5 Thermo Fisher Scientific Recent Development13.5 PerkinElmer, Inc.13.5.1 PerkinElmer, Inc. Company Details13.5.2 PerkinElmer, Inc. Business Overview and Its Total Revenue13.5.3 PerkinElmer, Inc. Nanotechnology in Medical Equipment Introduction13.5.4 PerkinElmer, Inc. Revenue in Nanotechnology in Medical Equipment Business (2015-2020)13.5.5 PerkinElmer, Inc. Recent Development13.6 Starkey Hearing Technologies13.6.1 Starkey Hearing Technologies Company Details13.6.2 Starkey Hearing Technologies Business Overview and Its Total Revenue13.6.3 Starkey Hearing Technologies Nanotechnology in Medical Equipment Introduction13.6.4 Starkey Hearing Technologies Revenue in Nanotechnology in Medical Equipment Business (2015-2020)13.6.5 Starkey Hearing Technologies Recent Development13.7 Smith + Nephew13.7.1 Smith + Nephew Company Details13.7.2 Smith + Nephew Business Overview and Its Total Revenue13.7.3 Smith + Nephew Nanotechnology in Medical Equipment Introduction13.7.4 Smith + Nephew Revenue in Nanotechnology in Medical Equipment Business (2015-2020)13.7.5 Smith + Nephew Recent Development13.8 Dentsply International13.8.1 Dentsply International Company Details13.8.2 Dentsply International Business Overview and Its Total Revenue13.8.3 Dentsply International Nanotechnology in Medical Equipment Introduction13.8.4 Dentsply International Revenue in Nanotechnology in Medical Equipment Business (2015-2020)13.8.5 Dentsply International Recent Development13.9 Mitsui Chemicals, Inc.13.9.1 Mitsui Chemicals, Inc. Company Details13.9.2 Mitsui Chemicals, Inc. Business Overview and Its Total Revenue13.9.3 Mitsui Chemicals, Inc. Nanotechnology in Medical Equipment Introduction13.9.4 Mitsui Chemicals, Inc. Revenue in Nanotechnology in Medical Equipment Business (2015-2020)13.9.5 Mitsui Chemicals, Inc. Recent Development13.10 AAP Implantate AG13.10.1 AAP Implantate AG Company Details13.10.2 AAP Implantate AG Business Overview and Its Total Revenue13.10.3 AAP Implantate AG Nanotechnology in Medical Equipment Introduction13.10.4 AAP Implantate AG Revenue in Nanotechnology in Medical Equipment Business (2015-2020)13.10.5 AAP Implantate AG Recent Development

14Analysts Viewpoints/Conclusions

15Appendix15.1 Research Methodology15.1.1 Methodology/Research Approach15.1.2 Data Source15.2 Disclaimer15.3 Author Details

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Potential Impact of COVID-19 on Nanotechnology in Medical Equipment Market | Growth Drivers, Business Strategies and Future Prospects 2026 - Jewish...

Nanotechnology-enabled Battery Market ( COVID 19-UPDATED ) to Witness a Pronounce Growth During 2019-2026 Key players are A123 Systems, Altair…

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Nanotechnology-enabled Battery Market ( COVID 19-UPDATED ) to Witness a Pronounce Growth During 2019-2026 Key players are A123 Systems, Altair...

Can we ‘trap and zap’ the coronavirus? – Futurity: Research News

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You are free to share this article under the Attribution 4.0 International license.

Researchers plan to reconfigure trap and zap wastewater-treatment technology to capture and deactivate the virus that causes COVID-19.

Their chemical-free nanotechnology, introduced earlier this year as a way to kill bacterial superbugs and degrade their antibiotic resistance genes in wastewater, would employ graphitic carbon nitride customized at the molecular level to selectively absorb viruses and then disable them by activating nearby catalysts with light.

The team aims to develop a system that is fast, efficient, and reliable under realistic scenarios, says Pedro Alvarez, professor of civil and environmental engineering and a professor of chemistry and of chemical and biomolecular engineering at Rice University.

COVID-19 might be a dress rehearsal for even more lethal infectious diseases that are very difficult to control, says Alvarez, director of the Nanosystems Engineering Research Center for Nanotechnology-Enabled Water Treatment (NEWT).

We need to enhance the capacity and resiliency of multimedia treatment processesespecially air filtration and wastewater disinfectionto protect public health.

SARS-CoV-2 has been found in air ducts, suggesting it could spread through a buildings air conditioning system, and in stool, even from patients who have tested negative for COVID-19, he says.

That suggests it could reach wastewater treatment plants, where it could survive for days.

While the researchers will test their work in the lab on similar but less-virulent strains, they expect their trap-and-zap treatment approach will recognize coronaviruses that cause not only COVID-19 but also MERS and SARS, according to the project abstract.

Support for the work comes from a National Science Foundation (NSF) RAPID grant to develop a novel approach for selective adsorption and photocatalytic disinfection of SARS-CoV-2.

Source: Rice University

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Can we 'trap and zap' the coronavirus? - Futurity: Research News

Global Nanotechnology in Cancer Treatment Market 2020 Innovative Trends and Insights Research upto 2025 – Jewish Life News

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Global Natural Alginate Wound Dressings Market 2020 by Key Players, Segmentation, Industry Growth, Opportunities and Forecast by 2025

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Global Nanotechnology in Cancer Treatment Market 2020 Innovative Trends and Insights Research upto 2025 - Jewish Life News

Nanotechnology in Medical Market Driven by Growing Demand in Healthcare for Forecast to 2027: Jude Medical Inc. (US), Starkey Hearing Technologies…

Nanotechnology in Medical Market Report provides an in-depth analysis of the overall market, The ripple effect of Coronavirus-Covid19 on the market needs to become part of strategy discussions to emerge strong. The report focuses on major key players, production details, their application, countries and also analyses the global and key regions market potential and advantage, opportunity, and challenge, restraints, and risks.

Key Players of the Nanotechnology in Medical Market:

In addition to the key players of the Nanotechnology in Medical, the report also has a combination with the newer tendencies that tend of managing to penetrate the production of the product. The report also classifies the several contributions to the market that helps in the growth of the market.

The top players covered in Nanotechnology in Medical Market are: Jude Medical Inc. (U.S.), Starkey Hearing Technologies (U.S.), PerkinElmer Inc. (U.S.), Stryker Corporation (U.S.), Affymetrix Inc. (U.S.)

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This Report Sample Includes: Brief Introduction to the Research Report, Table of Contents (Scope Covered as a Part of the Study), Top Players in the Market, Research Framework (Presentation), Research Methodology Adopted by Worldwide Market Reports

Points Covered of this Nanotechnology in Medical Market report are:

Market Drivers and the Risks Associated with the Nanotechnology in Medical Market:

The international Nanotechnology in Medical market has been characterized by several primary factors, with each factor tends of playing a crucial role in the boom of the market. The growth in the products has doubled with the smoother availability of the customer base that has been helping the company of flourishing globally. On the other hand, the presence of a dynamic supply chain has helped the company to grow exponentially. Therefore, regarding the increase in the opportunities of the market Nanotechnology in Medical faces severe complaints from all the aspects.

Major Geographical Regions and Market of the Nanotechnology in Medical:

The analysing and forecast of the global market of Nanotechnology in Medical have no longer been, specifically, analysed that are not on a global foundation but additionally on a neighborhood foundation. When a better look taken at the areas, the market has concentrated, and the file interior the important makes a strong point of Europe, Middle East & Africa, Asia Pacific, Latin America, and North America. These areas have studied regarding the hooked-up traits and the diverse possibilities in addition to the outlook that allows inside the benefitting of the market ultimately.

Research Methodology:

The report has been prepared after thorough market research being conducted. It has been prepared as per the Porters Five Force Model. In terms of timeline, the market takes the period between 2020-2027 into account for assessment. Apart from this, a comprehensive SWOT analysis has been provided for swift business decision making.

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Global Nanotechnology in Medical Market Report includes Detailed TOC points:

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Nanotechnology in Medical Market Driven by Growing Demand in Healthcare for Forecast to 2027: Jude Medical Inc. (US), Starkey Hearing Technologies...

Four Penn faculty elected to the American Academy of Arts and Sciences – Penn: Office of University Communications

Four faculty members have been elected members of the American Academy of Arts and Sciences. Guthrie Ramsey, Kathleen Stebe, Eve M. Troutt Powell, and Barbie Zelizer are among 276 honorees for 2020, recognized for their excellence and accomplishments.

Ramsey is the Edmund J. and Louise W. Kahn Term Professor of Music in the School of Arts & Sciences. A musicologist, pianist, and composer, he is a widely published author of books on African American music and musicians. He is currently completing two new books, a collection of mid-career essays, Who Hears Here?, and a monograph history of African American music from the slavery era to the present. As the leader of the band Dr. Guy's MusiQology, he has released three CDs and performed at a number of venues. He also produced a documentary film, Amazing: The Tests and Triumph of Bud Powell,and co-curated an exhibition at the Smithsonians National Museum of American History and Culture about how the Apollo Theater shaped American entertainment. Ramsey is the founder and editor of the blog Musiqology.com, which discusses musical issues of the day.

Stebe is the Richer & Elizabeth Goodwin Professor in the departments of Chemical and Biomolecular Engineering and Mechanical Engineering and Applied Mechanics in the School of Engineering and Applied Science. Her primary research interests are in non-equilibrium interfaces, with applications ranging from microfluidics to nanotechnology. Her group has studied how surface tension and capillary forces at these interfaces can be harnessed to steer the movement of nanoscale particles and objects into well-defined structures. This type of directed assembly is means of manufacturing filters that resist the development of biofilms, and a way for microscopic robots, driven by magnetic fields, to pick and place objects with even finer-grained control.

Troutt Powell is the Christopher H. Browne Distinguished Professor of History and Africana Studies. She teaches the history of the modern Middle East and the history of slavery in the Nile Valley and the Ottoman Empire. She has received fellowships from the American Research Center in Egypt and the Social Science Research Council and has been a fellow at the Institute for Advanced Study in Princeton and at the Radcliffe Institute for Advanced Study. In 2003 she was named a MacArthur Foundation Fellow. Her most recent book is Tell This in My Memory: Stories of Enslavement in Egypt, Sudan and the Late Ottoman Empire. She is now working on a book about the visual culture of slavery in the Middle East which will explore the painting and photography about African and Circassian slavery in the late 19th and early 20th centuries.

Zelizer is the Raymond Williams Professor of Communication in the Annenberg School for Communication, where she is also associate dean for research and director of the Center for Media at Risk. A former journalist, Zelizer is known for her work on journalism, culture, memory, and images, particularly in times of crisis. Her research explores the medias role in shaping the collective memory of events such as John F. Kennedys assassination and the Holocaust, as well as analyzing the conceptual and disciplinary boundaries of the study of the media. Her recent work has sought to provide a vision of why journalism matters and how it must adapt to survive not only structural challenges ushered in by digital technologies but the creeping rise of authoritarianism around the globe. She is a past president and fellow of the International Communication Association and has received fellowships from the Guggenheim Foundation, Center for Advanced Study in the Behavioral and Social Sciences, and American Council of Learned Societies, among many others.

Founded in 1780, the American Academy of Arts and Sciences honors exceptional scholars, leaders, artists, and innovators and engages them in sharing knowledge and addressing challenges facing the world. The full listing of the 240th class of artists, scholars, scientists, and leaders in the public, non-profit, and private sectors can be found at the American Academy of Arts and Sciences website.

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Four Penn faculty elected to the American Academy of Arts and Sciences - Penn: Office of University Communications

St. Kitts-Nevis first in the Caribbean to receive nontoxic advanced nanotechnology coating – ZIZOnline

Basseterre, St. Kitts, April 22, 2020 (SKNIS): The Federation of St. Kitts and Nevis is the first country in the Caribbean to receive a nanotechnology coating that can last up to 90 days on surfaces, said Dr. Theodore Hanley, a son of the soil and U.S. board-certified anesthesiologist, at the April 21 edition of the National Emergency Operations Center (NEOC) COVID-19 Daily Briefing.

Through our partners, we have secured a non-toxic advanced nanotechnology coating that can last on surfaces for up to 90 days. The technology creates a mechanical non-chemical barrier that no micro bacteria or virus can live on. I am proud to announce that the Federation of St. Kitts and Nevis is the first country in the Caribbean to receive this technology which arrived recently, said Dr. Hanley.

The National Emergency Management Agency (NEMA) will also be presented with the said technology.

NEMA has expressed interest in this new technology and we will be providing this so that this office can be clean and free of microbes as you practice and perform your so needed help to this country, he said.

Dr. Hanley said that this technology is widely used by large public and private U.S. and International organizations.

Important to note, Dr. Hanley said that their organization, Waters Anchor Health and Wellness, located in Frigate Bay, has been working closely with medical practitioners in St. Kitts and Nevis and has answered the call to source personal protective equipment (PPE).

Our organization has worked with local physicians and private businesses in need of PPE. We put together a combined order and utilized our global relations to source the requested items. We expect that that order will be on the island in the next couple of weeks, he said.

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St. Kitts-Nevis first in the Caribbean to receive nontoxic advanced nanotechnology coating - ZIZOnline

Global Nanotechnology in Cancer Treatment Market 2020 Industry Size, Shares and Upcoming Trends 2025 – Sask News Now

The recently published market research report titled Global Nanotechnology in Cancer Treatment Market Growth (Status and Outlook) 2020-2025 monitors the demand-side and supply-side trends. The report provides in-depth information on leading growth drivers, restraints, challenges, trends, and opportunities. It looks over the market into various segments, end-users, regions, and players on the basis of demand patterns, and prospect for 2020 to 2025 time-period. The various affecting factors like market share, competitive intelligence, and growth opportunity are elaborated in the report.

Understanding The Competitive Scenario:

Competitive landscape analysis contains major players analysis with their company profiles cover the product offerings, key financial information, recent developments, SWOT analysis, capacity, production, price, revenue, gross, gross margin, sales volume, sales revenue, consumption, growth rate, import, export, and strategies employed by them. This report offers in-depth information about the major market players in the global Nanotechnology in Cancer Treatment market: Merck, Smith & Nephew, Ferro, Capsulution Nanoscience, AstraZeneca, AMAG Pharmaceuticals, Stryker Corporation, Affymetrix, Starkey Hearing Technologie, PerkinElmer, St. Jude Medica, Acusphere

DOWNLOAD FREE SAMPLE REPORT: https://www.marketandresearch.biz/sample-request/122232

Regional Growth Analysis:

All major regions and countries have been covered in the Nanotechnology in Cancer Treatment report. The regional analysis will help market players to tap into unexplored regional markets, prepare specific strategies for target regions, and compare the growth of all regional markets. In addition, a study related to the market concentration rate as well as the concentration ratio over the estimated time period is presented. Based on the region, the global market has been segmented into: Americas (United States, Canada, Mexico, Brazil), APAC (China, Japan, Korea, Southeast Asia, India, Australia), Europe (Germany, France, UK, Italy, Russia), Middle East & Africa (Egypt, South Africa, Israel, Turkey, GCC Countries)

As per the product type, the market is categorized into: Nanostructured Materials, Nanotools, Nanodevices, Other

According to the application spectrum, the market is categorized into: Hospital, Laboratory, Others

The report highlights a detailed investigation of the global Nanotechnology in Cancer Treatment market chain structure, downstream buyers, market positioning, upstream raw material data, and different industrial strategies. Data associated with the latest trends driving the market along with the challenges this industry is about to experience in the upcoming years is mentioned in the report. SWOT analysis is also incorporated in the report along with venture return investigation. The study incorporates others such as economic scenarios, benefits, limits, trends, market growth rates, and figures.

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Global Nanotechnology in Cancer Treatment Market 2020 Industry Size, Shares and Upcoming Trends 2025 - Sask News Now

Israeli researchers say they can make disinfectant from tap water – The Times of Israel

Researchers at Bar-Ilan University have developed what they say is a new way to make strong and environmentally friendly disinfectants to kill bacteria and viruses by using just tap water.

The method, which has not been submitted for peer review or yet published in a journal, was developed and patented by Dr. Eran Avraham, Dr. Izaak Cohen and Prof. Doron Aurbach, head of the electrochemistry group, of the Department of Chemistry and Institute of Nanotechnology and Advanced Materials at Bar-Ilan University. Peer review is a standard check for research and is a key step in validating a discovery.

The disinfectant materials were recently tested by researchers in the virology labs of Prof. Ronit Sarid of the Mina and Everard Goodman Faculty of Life Sciences at the university and at the Poriya Hospital in the north of Israel, and were proven effective in neutralizing microbes, fungus and corona-type viruses, Aurbach said in a phone interview.

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The disinfectants are created by an adjustable, gentle electrification of water, he explained. Usually water always contains the usual salt sodium chloride he said. When you apply electricity to water you cause electrolysis decomposition of water that forms the elements hydrogen and oxygen as gases.

Bar-Ilan University Prof. Doron Aurbach in his lab. (Courtesy)

When the water contains also sodium chloride above a certain level, its electrification, or electrolysis, produces in addition to hydrogen and oxygen also chlorine gas.

What the Bar-Ilan researchers have developed is a process that produces hypo chloric acid, containing the three elements bound together, at a well-defined level of acidity and adjustable concentrations, he said. We form highly aggressive oxidative conditions for all kinds of microbes.

The process is tricky he added, and the electrolysis needs to be done in a very judicious way, to create the optimal disinfecting capability. The combination of the hypo chloric acid with a certain level of acidity transforms the electrified water into a very oxidizing agent that makes it possible to have a very effective disinfectant.

The disinfectants were found to be effective and safe to use to combat bacteria, viruses and spores, while at the same time pose no damage to larger bodies, such as skin cells. The materials also do not contaminate groundwater, the university said in a statement.

The solution can be used to create a variety of anti-bacterial products, such as spray-aerosols for disinfecting surfaces, appliances, beds, liquids for washing devices and hands, wipes, and other objects, including air-conditioning systems and washing machines, the statement said.

Because the solution does not cause burns or dry skin, it may also be suitable for treating wounds, said the researchers, who are investigating that possibility.

We examined the ability of these materials to impair herpes simplex virus type 1 infection and human coronavirus OC43. Both viruses were completely eliminated when exposed to the disinfectants for different periods of time. The structural characteristics of OC43 are similar to those of recent SARS-CoV-2 suggesting that this virus will also be easily eliminated with this disinfectant, said Sarid in the statement.

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Israeli researchers say they can make disinfectant from tap water - The Times of Israel