This is one place on Earth where no life can exist – KMJ Now

Life exists in extreme environments on Earth, from arid deserts and frozen tundras to thermal, toxic vents in the deepest reaches of the ocean floor. But it cant exist on every inch of the planet and scientists have discovered a place in Ethiopia where life cant find a way, according to a new study.

In contrast with previous research, scientists conducted multiple tests and found that there is no life, not even microorganisms, in Dallol. One of Earths most extreme environments, Dallol is incredibly hot, salty and acidic. Its ponds extend across a volcanic crater, in the Ethiopian Danakil depression, filled with salt, toxic gases and boiling water in response to extreme hydrothermal activity.

Even in winter, daytime temperatures can exceed 113 degrees Fahrenheit. Some of the hyper acidic and saline pools have negative pH values.

The findings published Friday in the journal Nature Ecology & Evolution.

After analysing many more samples than in previous works, with adequate controls so as not to contaminate them and a well-calibrated methodology, we have verified that theres no microbial life in these salty, hot and hyperacid pools or in the adjacent magnesium-rich brine lakes, said Purificacin Lpez Garca, study author and biologist at the French National Centre for Scientific Research.

However, outside of the ponds, its a different story.

What does exist is a great diversity of halophilic archaea (a type of primitive salt-loving microorganisms) in the desert and the saline canyons around the hydrothermal site, but neither in the hyperacid and hypersaline pools themselves, nor in the so-called Black and Yellow lakes of Dallol, where magnesium abounds, said Lpez Garca. And all this despite the fact that microbial dispersion in this area, due to the wind and to human visitors, is intense.

The researchers performed mass sequencing of genetic markers meant to find and classify any microorganisms that may be present, as well as cultures to find microbes, cytometry for detecting individual cells, brine chemical analysis and electron microscopy combined with X-ray spectroscopy.

At first glance, minerals rich in silica may mimic microbial cells, the researchers said. But their analysis revealed the difference.

In other studies, apart from the possible contamination of samples with archaea from adjacent lands, these mineral particles may have been interpreted as fossilized cells, when in reality they form spontaneously in the brines, even though there is no life, Lpez Garca said.

Scientists have used evidence of life in extreme environments on Earth as an analog for the conditions where life may exist on other planets in our solar system or beyond it. The researchers warned that in this case, just because there is liquid water present or because something resembles cells or other biological aspects beneath a microscope, does not mean there is life present.

Our study presents evidence that there are places on the Earths surface, such as the Dallol pools, which are sterile even though they contain liquid water, Lpez Garca said.

The Dallol ponds actually prevent life from forming because they contain chemical barriers like chaotropic magnesium salts that help break down hydrogen. Combined with the salty, acidic and hot environment, life receives no encouragement in the pools.

We would not expect to find life forms in similar environments on other planets, at least not based on a biochemistry similar to terrestrial biochemistry, said Lpez Garca.

The researchers will continue studying the pools to determine more about the limits of life.

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This is one place on Earth where no life can exist - KMJ Now

Working Through Frustrations to Understand Nature Better – Duke Today

This is the fifth of six posts written by students at the North Carolina School of Science and Math as part of an elective about science communication with Dean Amy Sheck.

Research is a journey full of uncertainty in which scientists have to construct their own path, even if theyre unsure of what the end of the journey actually is. Despite this unpredictability, researchers continue their journey because they believe their work will one day drive their fields forward. At least, thats why Kate Meyer Ph.D. says she has investigated something called m6A for several years.

Virtually every study that I have ever been part of hadsome frustrations involved because everything can fall apart in just onenight, Meyer said. Despite all the frustrations you might have, you are stillin the research because you know that at the end of the day, you will get newknowledge that is worthy to your field, or perhaps to the world.

N6-methyladenosine (or m6A) is a modification to one of the four main bases of RNA adenosine. Because RNA plays a significant role as a bridge between genetic information and functional gene products, modifications in RNA can alter how much of a certain product will be produced, which then controls how our cells and eventually our whole body functions.

The idea of this tiny but powerful modification was first proposed in the 1970s. But scientists struggled to find where m6A was located in the cell before research Meyer made a major contribution to as a trainee was published in 2012. Combining a newly developed antibody that could recognize m6A and gene sequencing techniques that became more accessible to the researchers, Meyers work led to the first method that can detect and sequence all of the m6A regions in a cell.

Meyers work was transformative research. Her method allowedlaboratories around the world to investigate what regulates m6A and what itsconsequences are. Meyer said this first study which ignited m6A field is one ofher most prideful moments as a researcher.

Significant progress has been made since 2012, but there are still lots of questions that need to be answered. Currently, Meyers research team is investigating the relationships between m6A and various neurological issues. She believes that regulation of m6A controls the expression, or activity level, of various genes in the brain. As such, m6A may play an important role in neurodegenerative diseases and memory.

As an assistant professor of both biochemistry and neurobiology at Duke, Meyer is definitely one of the most important figures in the m6A field. Despite her many accomplishments, she said she had experienced and overcome many frustrations and failures on her way to the results.

Guest Post by Jun Shin, NCSSM 2020

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Working Through Frustrations to Understand Nature Better - Duke Today

Top Diet and Nutrition Issues to be Highlighted during Jan. 29 Media-only Event – Newswise

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Newswise Nebraska food scientists are at the forefront in some of the hottest food and nutrition issues in the country the microbiome, which some predict to be one of the top nutrition issues in 2020; obesity, which continues to be a major health issue for the nation; food allergens, with the CDC reporting rising prevalence of food alelrgies in children; and food choice behavior.

On Jan. 29, a dozen researchers and scientists will be at the Food Innovation Center (1901 N. 21stSt., Lincoln, Nebraska) at Nebraska Innovation Campus to discuss their groundbreaking work with the media. The event begins at 11 a.m. with a brief overview of each research program. After a provided box lunch, media in attendance will have six 15-minute sessions to interview researchers. At 2 p.m., optional laboratory tours will be available for photos and b-roll. The event will be live-streamed for media who cannot attend in person.

Participating laboratories:

Nebraska Food for Health Center,Andy Benson, director, professor of food science and technology; Amanda Ramer-Tait, associate professor of food science and technology; and Robert Hutkins, Khem Shahani Professor of Food Science and Technology. The center is located in the Food Innovation Center, 1901 N. 21stSt., on the Nebraska Innovation Campus of the University of Nebraska-Lincoln.https://foodforhealth.unl.edu

Nebraska Center for Prevention of Obesity Diseases,Janos Zempleni, director, Cather Professor of Nutrition and Health Sciences; Jiujiu Yu, assistant professor of nutrition and health sciences; Xinghui Sun, assistant professor of biochemistry; Yongjun Wang, research assistant professor of nutrition and health sciences; Edward Harris, associate professor of biochemistry; Alice Ngu, graduate research assistant in nutrition and health sciences. The center is located at 316C Leverton Hall, 1700 N. 35thSt., on the University of Nebraska-Lincoln East Campus.https://cehs.unl.edu/npod

Food Allergy Research and Resource Program,Joseph Baumert, director, associate professor of food science and technology; Melanie Downs, assistant professor of food science and technology; Philip Johnson, assistant professor of food science and technology; and Richard E. Rick Goodman, research professor of food science and technology. The program is located in the Food Innovation Center, 1901 N. 21stSt. on the Nebraska Innovation Campus of the University of Nebraska-Lincoln.https://farrp.unl.edu

Food Choice Economics,Christopher Gustafson, associate professor of agricultural economics, 314A Filley Hall, 1625 Arbor Drive on the University of Nebraska-Lincoln East Campus.

The Food for Health Center, a $40.3 million collaboration among academics, food and drug manufacturers and philanthropists, was established in 2017 to use microbiome research to link agriculture and food production to wellness and disease prevention.

Launched in 2014, the Nebraska Center for the Prevention of Obesity Diseases has received nearly $23 million from the National Institutes of Health to determine the molecular mechanisms that lead to obesity and to identify consumer friendly remedies.

For nearly 25 years, the Food Allergy Research and Resource Program has worked in partnership with the food industry to detect and eliminate allergens in the food supply.

Behavioral economist Christopher Gustafson is identifying the hidden factors that cause people to add an extra dollop of mayo to their sandwich or select an apple, not a brownie for a post-workout snack.

Please contact Leslie Reed at 402-472-2059 orlreed5@unl.eduto reserve your space, including lunch, parking and optional lab tours.

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Top Diet and Nutrition Issues to be Highlighted during Jan. 29 Media-only Event - Newswise

NRC Research Press

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BSc Biochemistry – Swansea University

There is an opportunity for non-welsh speaking students to enroll on our Welsh for Medicine 1 + 2 courses, that have been uniquely developed alongside Swansea Bay-Learn Welsh, to introduce basic welsh lessons for a healthcare setting. here will be support for any student wishing to learn more about Welsh language and culture as they live and study here in Wales.

Welsh speaking students have the opportunity to study a 50credit module in each year through the medium of Welsh - Doctor as a Professional 1-4. The Welsh provision within these modules include:

Any prospective students can request to be interviewed in Welsh.

The Medical School is working toward enhancing and developing their Welsh language provision.

Students who choose to study at least 40credits a year in Welsh are eligible to apply for a Coleg Cymraeg Incentive Scholarshipof 500 a year - the closing date is in May.

Academi Hywel Teifi offers an internal scholarship of 300 a year to students choosing to study at least 40credits a year in Welsh, or a bursary of 100 a year to students choosing to study at least 5credits a year in Welsh. These may be applied for on a yearly basis, at the start of each Autumn term.

For more information, please contact Dr. Heledd Iago - h.f.iago@swansea.ac.uk

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BSc Biochemistry - Swansea University

Wesleyan Celebrates Completion of Science Theses with Poster … – Wesleyan Connection (blog)


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Wesleyan Celebrates Completion of Science Theses with Poster ...
Wesleyan Connection (blog)
Wesleyan's Natural Sciences and Mathematics Division recently hosted a Celebration of Science Theses, a poster session featuring the work of Honors and MA ...

and more »

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Wesleyan Celebrates Completion of Science Theses with Poster ... - Wesleyan Connection (blog)

Biochemistry Analyzers Global Industry Analysis Research Reports and Forecast 2024 – Digital Journal

This section of the report gives the breakup of the market share of all the key players operating in the global biochemistry analyzers market and observes that the market is highly fragmented owing to the presence of various companies, especially domestic players, in the global biochemistry analyzers market.

This press release was orginally distributed by SBWire

Albany, NY -- (SBWIRE) -- 05/22/2017 -- Market Research Reports Search Engine (MRRSE) in its latest report titled 'Biochemistry Analyzers Market: Global Industry Analysis and Forecast, 2016-2024'has presented a comprehensive research on the competition landscape in the global biochemistry analyzers market.The competition landscape portion of the global biochemistry analyzers market report begins by introducing the readers of the report to the company share analysis of all the important players operating in the global biochemistry analyzers market.

Request For Sample Report@ http://www.mrrse.com/sample/2945

In the subsequent section of the report, a competition dashboard is presented, which supplies information on various key players operating in the global biochemistry analyzers market; such as product offerings, regional presence and most important of all, strategies adopted by the key market players in order to succeed in the global biochemistry analyzers market. This kind of information is important for any new entrants or established players operating in the global biochemistry analyzers market as it provides insights on the kind of strategies being adopted by the leading market players so that they can emulate their success and also gauge the effectiveness of such strategies in different regions of the global biochemistry analyzers market.

In the subsequent sections of the competition landscape, individual information is supplied on the various key players operating in the global biochemistry analyzers market. The kind of information that is given includes company details, company description, product offerings, key financial information and key developments pertaining to the company. In addition, a strategic overview of the companies is also given that provides valuable information regarding the direction that the company is taking with respect to the market in the coming few years and how this will impact the global biochemistry analyzers market. Last but not the least, a SWOT analysis of all the key market players is also given in the competition landscape that provides deep insights regarding the key market players operating in the global biochemistry analyzers market and how the key market players are going to shape up the global market in the future with regards to their strengths and weaknesses and how they utilize the opportunities provided to them and tackle the various market threats and challenges.

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Besides this, in the beginning of the report, a market forecast is given that comprises three scenarios, namely the conservative scenario, the likely scenario and the optimistic scenario. All of these three scenarios will result in different market numbers and growth rates and the report gives information why a particular scenario has been chosen as the most likely scenario in the global biochemistry analyzers market and also gives information regarding the other scenarios that may change the market forecasts, if at all, and the magnitude of the change on the forecasted market numbers and growth rates. Besides this, a section on regional biochemistry analyzers market volume (Unit Mn) analysis and forecast by product type, 2016-2024 is also given that provides an overview of the volume share in the regional biochemistry analyzers market and which region is the largest, most lucrative and fastest growing in terms of volume so that correct decisions pertaining to the global biochemistry analyzers market are taken. In addition, there is a section of the report devoted to the fully and semi-automated biochemistry analyzers price forecast by region, 2015 & 2024. This section of the report gives a price overview of the market region wise, so that important decisions on market growth and expansion can be taken by the players who wish to operate in the biochemistry analyzers market.

Another important and attractive feature of the global biochemistry analyzers report present by Persistence Market Research is the inclusion of PEST analysis. The detailed PEST analysis provided in the report gives all the important political, economic, social and technological aspects governing the global biochemistry analyzers market so that readers are fully aware of all the important factors that directly or indirectly affect the growth of the biochemistry analyzers market globally. Besides, information about the Laboratory Accreditation: Internal Quality Control (IQC), Laboratory Accreditation: External Quality Assessment Scheme (EQAS) are also given, adding more value to the report. Important guidelines by the Clinical and Laboratory Standards Institute (CLSI) are provided to enable readers to get an idea about the nuances of the global biochemistry analyzers market.

Also, in addition to all the above, the biochemistry analyzers market report contains an executive summary and also market definitions and the market taxonomy. Macroeconomic factors affecting the global biochemistry analyzers market along with the demand side drivers and supply side drivers are also given in order to give a deep overview of the global biochemistry analyzers market. Besides, restraints impacting the market along with opportunities and trends shaping up the biochemistry analyzers market also given to further add value to the report. The global biochemistry analyzers market analysis and forecast by product type, by end user, by modality, and by region is also given. This section of the report contains valuable information like Basis Point Share (BPS) analysis, Y-o-Y growth projections and market attractiveness analysis to provide in-depth insights into the global biochemistry analyzers market.

Market Segmentation

By Product Type

Semi-automated Biochemistry Analyzer Fully Automated Biochemistry Analyzer By Application

Clinical Diagnostics Bioreactor Byproduct Detection Drug Development Applications Others By Modality

Bench-top Floor standing By End User

Hospitals Diagnostic Centers Pharmaceutical Companies Biotechnology Companies Academic Research Institutes Contract Research Organizations Academic Research Institutes By Region

North America Latin America Europe Asia Pacific Middle East and Africa

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About Market Research Reports Search Engine Market Research Reports Search Engine (MRRSE) is an industry-leading database of market intelligence reports. MRRSE is driven by a stellar team of research experts and advisors trained to offer objective advice. Our sophisticated search algorithm returns results based on the report title, geographical region, publisher, or other keywords.

MRRSE partners exclusively with leading global publishers to provide clients single-point access to top-of-the-line market research. MRRSE's repository is updated every day to keep its clients ahead of the next new trend in market research, be it competitive intelligence, product or service trends or strategic consulting.

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Biochemistry Analyzers Global Industry Analysis Research Reports and Forecast 2024 - Digital Journal

Walnuts Boost Good Gut Bacteria – Anti Aging News

Recent study shows that walnuts increase the diversity of gut bacteriaand appear to act in much the same manner as prebiotcs.

Research Associate Professor of Physiology at LSU, Lauri Byerley, has determined the consumption of walnuts alters the composition of bacteria within the gut. This finding suggests a new manner in which walnuts might improve human health. The details of the finding were recently published online in The Journal of Nutritional Biochemistry.

About the Study

Dr. Byerley keyed in on walnuts as they are generally revered as a superfood. Walnuts are loaded with the omega-3 fatty acid known as alpha-linoleic acid. They also contain fiber and an abundance of antioxidants. Dr. Byerley's finding shows this superfood provides yet another benefit by promoting beneficial alterations to microbiota within the gut.

Dr. Byerley made use of a rodent model for the study. Her research team provided one group of mice with walnuts in addition to their regular food consumption. The other group continued consuming its normal diet without walnuts.

A Closer Look at the Finding

The researchteam measured the number and type of gut bacteria within the descending colon and compared the results. They determined there were two unique bacteria communities within the groups. The type and number of walnuts altered in the group of mice that consumed walnuts. Even the functional capacity of the bacteria changed in this group. As an example, the research team pinpointed a meaningful boost in Lactobacillus, a beneficial bacteria. The consumption of walnuts resulted in a significant increase in the diversity of bacteria within the gut. Other unrelated studies have tied low levels of bacterial diversity with a wide range of diseases such as inflammatory bowel disease and even obesity.

Walnuts as a Prebiotic?

Dr. Byerley suggests walnuts might function as a prebiotic as they heightenthe level of numerous bacteria such as Lactobacillus that is usually associated with probiotics. Prebiotics are best defined as substances that catalyze the activity and number of helpful bacteria.

Why the Study Matters

The health of the human gut is one of the hottest areas of contemporary research. Scientists are finding that improved bacterial diversity might be tied to improved health outcomes. The research team determined that altering the gut microbe community through the incorporation of walnuts to one's diet provides a new means of enhancing health. It is also worth noting that the consumption of walnuts is also tied to decreased cardiovascular disease risk, better brain health and a slowing of tumor growth in animals.

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Walnuts Boost Good Gut Bacteria - Anti Aging News

Molecular genetics and biosystems design research leads to improved water-use efficiency of plants – Nevada Today

Some of the most water-efficient plants do an unexpected thing at night. They take up carbon dioxide at night instead of during the warmer daytime, which improves efficiency of water use and adaption to semi-arid and arid climates.

John Cushman is one of the world's leading researchers on the molecular genetics of this specialized type of photosynthesis, which is known as crassulacean acid metabolism or CAM photosynthesis. His research and plant molecular-genetics program at the University of Nevada, Reno are nationally and internationally recognized, and have made important contributions to understanding and developing more water-efficient plants. In recognition of this, the foundation professor of biochemistry and molecular biology within the College of Agriculture, Biotechnology and Natural Resources will receive the 2017 Nevada Regents' Researcher Award.

Related Academic Programs

"CAM used to be thought of as a curiosity: a weird, esoteric thing that a few desert plants do," Cushman said. "It was a biological curiosity, but wouldn't you want to have this biological application apply to more plants to improve water-use efficiency?

"There was no inkling early on that this would have the impact it is having. Now, people are realizing the importance of this," he said.

After completing his master's and doctoral degrees in microbiology at Rutgers University, Cushman was awarded a post-doctoral fellowship in plant biology by the National Science Foundation. Through that fellowship, 30 years ago he began working at the University of Arizona, Tucson on what would become the focus of his career - plant stress and CAM plants such as agave and cactus.

Cushman has served as principal or co-principal investigator on research projects totaling more than $28 million in grant funding, has published more than 150 peer-reviewed papers and non-peer reviewed book chapters and lay publications. He currently serves as principal investigator on a multi-institutional, $14.3 million grant-funded project supported by the U.S. Department of Energy to explore the genetic mechanisms of CAM. The five-year project, now in its final year, is innovating understanding of drought tolerance in desert-adapted plants and application of this knowledge to biofuel crops. The project includes a $7.6 million grant award to the University of Nevada, Reno, with sub-awards to researchers at the Oak Ridge National Laboratory, the University of Newcastle, and the University of Liverpool.

Through this and other grant-supported projects, the Cushman laboratory team is sequencing the genomes of several CAM plants and applying genome-editing technology to further improve their water-use efficiency. In one discovery through the DOE project, the leaf anatomy of the plant was changed, which increased its drought and salt tolerance.

In their nomination of Cushman for the award, Department of Biochemistry and Molecular Biology Chair Claus Tittiger and Professor Gary Blomquist note the increasing relevance of Cushman's research program for sustainable agriculture and water use, especially in the face of global climate change.

"Currently, approximately 40 percent of the world's land area is considered arid, semi-arid or dry sub-humid, with precipitation amounts that are inadequate for most conventional agriculturally important C3 or C4 (photosynthesis) crops," they wrote. "Prolonged drought and over-reliance on groundwater for crop irrigation has led to the depletion of aquifers in the US and across the globe. The development of more drought tolerant or water-use efficient crops should positively impact the future of agriculture in the state while promoting the wise use of limited water resources in Nevada and in arid states throughout the western U.S."

For the past dozen years, Cushman has served as director of the University's biochemistry graduate program, which is an interdisciplinary collaboration in the Molecular Biosciences among the Cell and Molecular Biology Program and the Cellular and Molecular Pharmacology and Physiology Program within the College of Agriculture, Biotechnology and Natural Resources, the College of Science and the School of Medicine. The directorship exemplifies two aspects of higher education that Cushman values: the overlap between research and education and the increasing importance of multidisciplinary collaboration.

Cushman has witnessed and appreciates the evolution of research from single-investigator programs to larger, comprehensive programs.

"Large genome sequencing and bioinformatics projects need large teams," he said. "The technology is such that you can't be an expert in all of the research methodologies involved. We need and rely upon good collaborators."

As for his commitment to education and students, Tittiger and Blomquist wrote, "Dr. Cushman has made significant contributions to graduate education. He has not only mentored an impressive number of doctoral students and postdoctoral scholars over his career, many of whom have gone on to realize successful careers as independent scientists, but also he has been integral to maintaining the high quality of the biochemistry graduate program throughout his tenure as Graduate Program Director."

Cushman remains excited about the future and sees the field of synthetic biology as the next frontier. He also is enthusiastic about contributing to the University's expanding research and teaching presence in dryland, sustainable agriculture.

"With Nevada being the driest state, we'd like to become known for our growing expertise," Cushman said.

The Nevada Regents' Research Award is presented annually to one faculty member across the institutions of the Nevada System of Higher Education. An NSHE selection committee reviews nominations from the institutions and recommends an honoree to the Nevada Board of Regents' Academic and Student Affairs Committee for approval. The recipient receives an award amount of $5,000.

So, what does this honor mean to Cushman? Always humble, he said, "The more we can show we are having impact, the better for our students, college, University, state, country and science."

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Molecular genetics and biosystems design research leads to improved water-use efficiency of plants - Nevada Today

Advice after transferring – The Watchdog

One of the best days for transfer students is when they find out where they will be going to finish the last two years of their degree. Normally, these decisions are released late in the summer, but its definitely a breath of relief when a transfer student finally has confirmation that theyll be moving on to another university. Unfortunately, more issues tend to rise during the transition period into the new institution.

I transferred into the University of Washington in fall 2016. UWs acceptance arrived in the last week of June, a month or two after I received a handful of rejection letters and the panic began to engulf any hope that I had for the future. Luckily, things worked out and I quickly wrapped up my classes at BC and began to prepare for the UW.

Acclimating to UW was a struggle for me. Frankly, I was surprised with the amount of shock I was experiencing in my first quarter. UWs campus is obviously huge, but it feels even bigger when I tried to navigate to my first class. I pulled out Google Maps just so I can find directions. Class sizes are also gigantic. My biochemistry class had around 500 students and on my first day, I had to choose between sitting on the dusty steps or on a squeaky table, I chose the table. This information is well-known by almost every student, whether they go to UW or not but its something that one truly understands until they actually experience it.

Adjusting to the physical characteristics of UWs campus took about a week. The most challenging experience was trying to acclimate to the academic difficult at UW. For some audacious reason, I decided to enroll in two high-level STEM courses, biochemistry and immunology, as well as an economics course, because I was deciding if a double major was a good idea. In complete honesty, I dropped out of immunology and got a W for withdrawal tattooed on my very first UW transcript, failed economics and just barely passed biochemistry, thanks to the incredible grading curve. Coupled with other issues happening outside academics, my first quarter at UW was also my worst.

Numbers and grades should not mean much, but it still hurts when one fails. At this point in my life, I was highly confused with what I should do. I decided to speak with my major adviser to create a plan B. My biochemistry adviser gave some logical advice and helped create a new academic plan for the 2016-2017 school year that would keep me on track for graduation. Although my senior year at UW will be quite difficult trying to complete my science electives, she assured me it was feasible.

My transfer adviser also shared some motivating wisdom. My first quarter at UW as a transfer student is common and other transfer students encounter the same issues. After experiencing this low point in my academic career, Ive found some useful advice for anyone beginning their first year at a new institution.

The first thing anyone should do is register for a light load of classes for their first quarter or semester. Keep in mind to sign up for classes that help complete graduation credits. These courses dont necessarily have to be in line with ones major, but it wouldnt be a bad idea to include a major-related class.

Find some kind of support. Coming from BC, I had somewhat of a lone-wolf mentality when it came to schoolwork, and at BC, it worked. At a larger university with crazy grading curves and a class average of 60 percent, this mindset is not conducive to success. Take some time to find clubs around campus that might be interesting. Talk to classmates and create a relationship. Create a network of people that can act as academic support. Going through university is not an individual burden and it requires ample support from people who understand the situation. Dont be afraid to reach out to advisers and professors when one experiences failure. The hefty tuition covers it and it would be a waste to ignore these opportunities.

Lastly, if one does fail like me, the best thing to do is plan with an adviser and start the new quarter with better knowledge. Although past failures may have scarred ones outlook at life, it shouldnt completely impede ones progress. By being accepted into a university and into a major, the admissions team must have seen some kind of potential in their applicants. Its important for all transfer students to understand that they can succeed in a fast-paced, arduous academic environment.

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Advice after transferring - The Watchdog

Fighting Infectious Diseases Using 3D Weapons – Technology Networks

UTSW researchers helped solve this structure showing how two Ebola proteins interact, VP35 (black) and NP (rainbow). Credit: UT Southwestern Medical Center

After a decade of work, the Center for Structural Genomics of Infectious Diseases (CSGID) a consortium of 10 scientific institutions in the U.S., Europe, and Canada announced that it has determined the 3-D atomic structures of more than 1,000 proteins.

Determining these structures is an important step in identifying and understanding where a pathogen might be vulnerable to assault by drugs or vaccines. Such vulnerabilities are frequently found at the points where molecules bind to one another, said Dr. Zbyszek Otwinowski, Professor of Biophysics and Biochemistry, who leads the UT Southwestern group participating in the project. Dr. Dominika Borek, Assistant Professor of Biophysics and Biochemistry, who works in Dr. Otwinowskis laboratory, contributed crucial expertise for the successful completion of these studies.

To make a 3-D structure, a protein must be cloned, expressed, and crystallized, and then X-ray diffraction data are collected at the Advanced Photon Source at Argonne National Laboratory. These data define the location of each of the hundreds or even thousands of atoms to generate 3-D models of the structures that can be analyzed with graphics software. Each institution in the Center has an area of expertise it contributes to the project, working in parallel on many requests at once.

The UT Southwestern team manages the salvage pathway, meaning scientists design custom methods for determining structures of molecules that resist standard approaches and for which the high potential for drug or vaccine development justifies applying advanced efforts.

Structures solved with help from the UT Southwestern team include proteins involved in the replication of the Ebola virus a pathogen notorious for its ability to evade the bodys immune system. Their X-ray crystallography work formed the basis for preclinical studies currently underway in university and industry laboratories.

When other scientists run into trouble determining crystal structures, Drs. Otwinowski and Borek are among the top people in the world who can develop these advanced approaches because they understand the theory so deeply and they have created such powerful methods to deal with difficult problems, said Dr. Michael Rosen, Chair of Biophysics at UT Southwestern and a Howard Hughes Medical Institute Investigator. Dr. Rosen has secondary appointments as a Professor of Biochemistry and in the Cecil H. and Ida Green Comprehensive Center for Molecular, Computational, and Systems Biology. Dr. Rosen also holds the Mar Nell and F. Andrew Bell Distinguished Chair in Biochemistry.

UT Southwesterns contribution to the Ebola project began when a scientist at the Washington University School of Medicine requested the consortiums help in structural studies of the Ebola protein VP35. UTSW researchers conducted detailed structural studies of a VP35 protein fragment that interacts with the Ebola nuclear protein (NP) to form a complex that protects Ebolas genetic material from digestion by the hosts enzymes.

The structure revealing the interactions between the VP35 fragment and the NP protein provided the first glimpse into the protein complexs role in viral replication. That work, part of a multicenter study to better understand the complexs function, was reported as a Cell Reports cover story in 2015.

This 3-D structure is among the 1,000 now deposited by the consortium into the World-Wide Protein Data Bank, an archive supported by the National Institutes of Health that is freely available to the scientific community. The CSGIDs breakthrough research is funded by two five-year contracts from the National Institute of Allergy and Infectious Diseases, with a total budget of $57.7 million.

This article has been republished frommaterialsprovided by UT Southwestern Medical Center. Note: material may have been edited for length and content. For further information, please contact the cited source.

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Fighting Infectious Diseases Using 3D Weapons - Technology Networks

Chemistry & Biochemistry | South Dakota State University

The Department of Chemistry and Biochemistry offers Bachelor of Science degrees in chemistry and biochemistry, a Master of Science degree in chemistry and Doctor of Philosophy degrees in chemistry or biochemistry.

The BS chemistry and biochemistry majors both meet the certification requirements of the American Chemical Society. Both majors are excellent preparation for medical, dental, veterinary, or chiropractic school admission. They provide training for students planning to attend graduate school or work in the chemical or biochemical industries. Students in both majors have the option of developing a specialization in secondary (high school) teaching, and students pursuing the chemistry major have the option of developing an emphasis in environmental chemistry or materials science.

The graduate programs in the department lead to the M.S. or Ph.D. degrees in chemistry or a Ph.D. degree in biochemistry. Research programs exist in analytical, biochemistry, chemical education, environmental, organic, and physical chemistry. All students admitted to the graduate program receive a full assistantship to support them during their studies.

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Chemistry & Biochemistry | South Dakota State University

Underlying cause of a form of macular degeneration characterized – Science Daily

Underlying cause of a form of macular degeneration characterized
Science Daily
Kathleen Boesze-Battaglia, a professor in the Department of Biochemistry in Penn's School of Dental Medicine, also contributed her expertise in lipid biochemistry and spectral analysis of lipid debris to the study, which was published in the journal ...

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Underlying cause of a form of macular degeneration characterized - Science Daily

New bile discovery will rewrite textbooks – MSUToday

Forget what you know about bile because thats about to change, thanks to a discovery made by Michigan State University and published in the current issue of Nature.

Much of our knowledge about bile hasnt changed in many decades. Its produced in the liver, stored in our gall bladder and injected into our intestine when we eat, where it breaks down fats in our gut. In fact, the first bile acid was discovered in 1848, and the scientists who revealed the structure of bile acids in 1928 won the Nobel Prize. Thats a long time ago.

Since then, our understanding of the chemistry of bile production in the liver was that the cholesterol backbone of the bile acid structure is linked to the amino acids glycine or taurine to produce our primary bile acids, said Robert Quinn, assistant professor of biochemistry and molecular biology and Global Impact researcher, and lead author of the study. It begs the question of how the new bile acids weve discovered have remained hidden during the last 170 years of bile acid chemical research.

These new bile acids are not produced by our enzymes; theyre made by microbes in our gut. This discovery will change how medical textbooks address digestion, and it contributes to an ever-growing body of knowledge supporting the importance of the microbiome, the collective community of bacteria and other microorganisms living in our guts.

Quinns team, comprised of scientists from MSU, the University of California San Diego and a number of collaborating institutions, showed that microbes in the gut, members of the microbiome, produce unique bile acids by conjugating the cholesterol backbone with myriad other amino acids.

This represents a fifth mechanism of bile acid metabolism by the microbiome that greatly expands our understanding of mammalian bile.

While much of the study was conducted in mice, these novel bile acids were also found in humans. And heres the kicker that will guide future research: Theyre particularly abundant in the guts of people suffering with gastrointestinal diseases, such as Crohns disease and cystic fibrosis.

These molecules can alter signaling pathways in the human gut that result in a reduction of overall bile acid production, representing a new mechanism where our gut bacteria can manipulate our own physiology, Quinn said.

While the disease connection is an intriguing line of research, this is merely one aspect being pursued by Quinns lab.

Clearly, our understanding of these compounds is in its infancy, Quinn said. This exciting new discovery opens more questions than answers about these compounds and their role in our health.

(Note for media: Please include a link to the original paper in online coverage: https://www.nature.com/articles/s41586-020-2047-9)

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New bile discovery will rewrite textbooks - MSUToday

Predictive Value of Nutritional Risk Screening 2002 and Mini Nutrition | CIA – Dove Medical Press

Xiaoyan Zhang,* Xingliang Zhang,* Yunxia Zhu, Jun Tao, Zhen Zhang, Yue Zhang, Yanyan Wang, YingYing Ke, ChenXi Ren, Jun Xu

Department of Geriatrics, Shanghai Jiaotong University Affiliated Sixth Peoples Hospital, Shanghai 200233, Peoples Republic of China

*These authors contributed equally to this work

Correspondence: Xiaoyan Zhang Email zhangxy971088@hotmail.com

Background and Aim: The presence of malnutrition in hospitalized geriatric patients is associated with an increased risk of mortality. This study aimed to examine the performance of Nutritional Risk Screening 2002 (NRS2002) and Mini Nutritional Assessment Short Form (MNA-SF) in predicting mortality for hospitalized geriatric patients in China.Methods: A prospective analysis was performed in 536 hospitalized geriatric patients aged 65 years. Nutrition status was assessed using the MNA-SF and NRS2002 scales within 24hrs of admission. Anthropometric measures and biochemical parameters were carried out for each patient. Patients were follow-up for up to 2.5 years.Results: At baseline, 161 (30.04%) patients had malnutrition/nutritional risk according to NRS2002 assessment. According to MNA-SF, 284 (52.99%) patients had malnutrition/nutritional risk. Malnutrition/nutritional risk patients had lower anthropometric and biochemical parameters (P< 0.05). NRS2002 and MNA-SF had a strong correlation with classical nutritional markers (P< 0.05). NRS2002 versus MNA-SF showed moderate agreement (kappa=0.493, P< 0.001). During a median follow-up time of 795 days (range 10 947 days), 118 (22%) participants died. The KaplanMeier curve demonstrated that malnutrition/nutritional risk patients according to NRS2002 or MNA-SF assessment had a higher risk of mortality than the normal nutrition patients (2=17.67, P< 0.001; 2=28.999, P< 0.001, respectively). From the components of the Cox regression multivariate models, only the NRS2002 score was an independent risk factor inuencing the mortality.Conclusion: Both NRS2002 and MNA-SF scores could predict mortality in Chinese hospitalized geriatric patients. But only NRS2002 score was the independent predictor for mortality.

Keywords: NRS2002, MNA-SF, elderly, nutritional screening, malnutrition

This work is published and licensed by Dove Medical Press Limited. The full terms of this license are available at https://www.dovepress.com/terms.php and incorporate the Creative Commons Attribution - Non Commercial (unported, v3.0) License.By accessing the work you hereby accept the Terms. Non-commercial uses of the work are permitted without any further permission from Dove Medical Press Limited, provided the work is properly attributed. For permission for commercial use of this work, please see paragraphs 4.2 and 5 of our Terms.

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Predictive Value of Nutritional Risk Screening 2002 and Mini Nutrition | CIA - Dove Medical Press

Shawnee researcher at KSU helps unravel tree mystery – The Dispatch

Salt cedar may have gotten a bad rap.

Also known as the flowering tamarisk tree, salt cedar originated in drier areas of Eurasia and has become a major weed in the southwestern United States, where it is considered an invasive species.

Now, biochemistry researchers at Kansas State University may not only exonerate the plant, but also find that it can help remove pollutants from the environment.

Larry Davis, professor of biochemistry and molecular biophysics, and undergraduate researchers Alexcis Barnes, Salina, and Katie McKinley, Shawnee, are working to understand why salt cedar is so prolific.

The plant can tolerate high levels of two things that are toxic to other plants when present in more than trace amounts: salt and boron.

Both can become concentrated from river irrigation, and boron is a common pollutant that finds its way into water from industry such as glass making, facilities burning wood or coal, and other sources.

Boron pollution carries grim implications for agricultural areas.

In the western part of the central valley of California, for example, its a limiting factor, Davis said. Theyre down to about five crops they can grow because the boron contamination makes black spots on lettuce and other plants.

They can still grow sunflowers and canola because they are harvesting the oil and dont care about the leaves.

Research on salt cedar has been scant, and as the plant has spread, people have assumed that it was choking out or even killing native plants.

Davis work may demonstrate that salt cedar is thriving where other plants cant survive because of boron contamination in water and soil.

McKinley, a junior in biochemistry, has worked with Davis for two years.

She conducts experiments with salt cedar to test how much boron the plants can take.

Salt cedars can withstand up to eight times the boron that a normal sunflower can withstand, McKinley said. Thats crazy, because they are much more slow-growing. They withstand up to 250 parts per million, which is a lot. Eight parts per million will kill other things. Its really impressive.

According to McKinley, salt cedars take up boron and then secrete it on their leaves as a film.

The next step is to determine how the plants take up boron and whether they could be used to take boron out of the soil.

Thats where Barnes comes in.

She is studying the channels in cell membranes that allow water and other particles into the plant, known as aquaporins, to see how they work in salt cedar.

When she completes a new aquaporin model, she is hoping to determine whether salt cedar simply excludes boron or takes it up into its tissues.

Another undergraduate in the Davis lab is exploring whether lipids in the roots explain the plants boron resistance.

Understanding these mechanisms may lead to using salt cedar to help remove pollutants from water or soil, a process known as phytoremediation.

Salt cedar could be planted in areas with boron-contaminated water, for instance, and allowed to take up the pollutant, then cut down and used for fuel.

Both McKinley and Barnes are participating in undergraduate research through Kansas State Universitys Developing Scholars Program.

The program offers high-achieving, underrepresented students research experience along with academic, social and financial support.

Barnes said the program helped her learn to manage her time and set priorities, plus develop her scholarly skills.

The program allows you to network and have a developed scholarly education by the end of your undergraduate career, Barnes said. I feel like I would be missing out on something had I not been doing the research.

McKinley agreed and said the lab experience has built her confidence.

It gives you a lot of lab work experience in safety protocol and using the tools and machines. I can do the mass spectrometry, calculate molarity I have physical experience for years doing this. I feel more confident in my skills working in a lab, McKinley said.

Davis supports the program, noting 10 biochemistry majors are in the Developing Scholars Program.

Biochemistry is a growing field, partially because the Medical College Admission Test emphasizes the field.

Barnes and McKinley both hope to enter the medical field.

Barnes wants to attend medical school and McKinley plans to become a pharmacist and work in a hospital or conduct pharmacology research.

Both say incoming freshmen should seek out opportunities to engage in research and find a mentor like Davis.

Its been wonderful to work with Dr. Davis and learn from him, Barnes said. He is so knowledgeable, and hes patient and is good about explaining higher-level concepts to me.

He can explain in ways I can understand or draw them out on paper. He involves me in conversations with other labs and helps me with networking. Hes a wonderful mentor.

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Shawnee researcher at KSU helps unravel tree mystery - The Dispatch

Neighbor to Neighbor – The Item – Worcester Telegram

Joseph Hershberger, of Bolton, has been named to the Siena College fall dean's list.

Samuel Landadio, of Sterling, joined 22 other Cedarville University students who traveled to Washington, D.C. on Friday, Jan. 24, to attend the 2020 National March for Life.

The March for Life was held on the anniversary of the U.S. Supreme Court's Roe v. Wade ruling in 1973, which legalized abortion in the U.S.

Three local residents were named to the fall dean's list at Nicholas college: Zachary Sullivan, of Berlin, Simeon Ramey, of Sterling, and Thomas Parda, of Lancaster.

Four local residents were named to the fall dean's list at Coastal Carolina University: Kelsie Antunes, a management major from Sterling; Brianna Krushefsky, a special education multi-categorical major from Boylston; Sarah Newton, a communication major from Lancaster; and Katarina Pizzarella, a marketing pre-major major from West Boylston.

Jillian Winer, of Bolton, was awarded faculty honors for the fall semester at Trinity College.

Southern New Hampshire University named four local residents to the fall president's list: Cassidy Cortes, of Bolton, Matthew Hross, of Clinton, Alexander Littizzio, of Sterling, and Katherine MacDonald, of Lancaster.

Stacy Anfinson, a University of Iowa student from Clinton, has been named to the fall dean's list. Anfinson's major is English in the College of Liberal Arts and Sciences.

Several local residents were among 1,678 students from Worcester Polytechnic Institute (WPI) named to the university's fall dean's list:

Berlin: Rachael Mair, Class of 2021, majoring in industrial engineering;

Bolton: Justin Schoepke, Class of 2022, majoring in aerospace engineering; Joshua McKeen, Class of 2022, majoring in computer science; John Higgins, Class of 2023, majoring in computer science; Matthew Adiletta, Class of 2021, majoring in electrical and computer engineering and computer science; Benjamin Guerriero, Class of 2022, majoring in electrical and computer engineering; and Andrew Adiletta, Class of 2023, majoring in electrical and computer engineering;

Boylston: Timothy McQuade, Class of 2020, majoring in mechanical engineering;

Clinton: Benjamin Seeto, Class of 2021, majoring in mechanical engineering; and Troy Howlett, Class of 2021, majoring in mechanical engineering;

Lancaster: Tyler Hunt, Class of 2022, majoring in aerospace engineering; and Allison Spratt, Class of 2022, majoring in management engineering;

Sterling: Olivia Wallace, Class of 2023, majoring in biochemistry; Carolyn Heighton, Class of 2021, majoring in biomedical engineering; Emma Bailey, Class of 2022, majoring in biomedical engineering; Emma Shulenburg, Class of 2023, majoring in biomedical engineering; Dylan Grady, Class of 2023, majoring in computer science; David Hinckley, Class of 2022, majoring in management engineering; and Rachel Manca, Class of 2020, majoring in management information systems; and

West Boylston: Priscilla Anand, Class of 2023, majoring in chemical engineering; Griffin Atchue, Class of 2023, majoring in computer science, and interactive media and game development; Hannah Frieden, Class of 2023, majoring in industrial engineering; John Amaral, Class of 2020, majoring in interactive media and game development, and computer science; and Molly O'Connor, Class of 2020, majoring in mechanical engineering.

Rebecca Meininger, of Bolton, has been named to the fall president's list at Clemson University. Meininger is majoring in marketing.

Carli Carbone, of Sterling, and Kyla Shaye, of Bolton, were named to the fall dean's list at the University of Delaware.

Jacqueline Cannon, a fourth-year student at the College of the Holy Cross, was named to the fall dean's list. She is the daughter of John and Maureen Cannon, of Lancaster.

Three local students were named to the fall dean's list at Wentworth Institute of Technology: Nicholas DeVincent and Chrisoula Moraitis, of Berlin, and Adriana Valenti, of Bolton.

Clinton Savings Bank announced several promotions.

Kelly Manz was promoted to consumer loan officer, an advancement from her position of consumer loan underwriter. Manzs previous CSB roles include teller, senior teller, teller supervisor and assistant branch manager.

After Consumer Lending had an extremely busy year, Ms. Manzs vast skillset did not go unnoticed, said Debra Colonna, vice president/mortgage operations manager. Kelly worked tirelessly this past year underwriting consumer loans - she exemplifies what we look for in our employees and we are extremely lucky to be able to call her a member of our team.

Manz, is a Clinton native now living in Leominster. She began working at CSB in 2004. Her primary responsibilities are underwriting and processing consumer loans.

In her free time, Manz loves traveling, attending concerts, spending time with her husband, Kyle, and daughter, Kasey, as well as volunteering at local community fairs. Throughout the course of her CSB career, she has been selected several times as employee of the month.

Lisa Poirier was promoted to vice president (VP), controller. In her role as VP, controller, Poirier is responsible for preparing the monthly, quarterly, and annual financial statements, calculating the Allowance for Loan Losses (ALLL), preparing the annual budget, and preparing and analyzing Liquidity and the Asset / Liability Management reports.

Ms. Poirier has been an integral part of the CSB team since she began working here in 1998, said Richard Hayward Jr., executive vice president/chief financial officer/treasurer. Furthermore, she has continuously shown her commitment to learning the inner workings of all departments within CSB and has impressed us for over 20 years with her advanced knowledge of accounting and finance, her passion to learn, and her on-going dedication to her work.

Poirier holds a bachelors degree in business administration with a concentration in accounting from Fitchburg State University. Poirier started at CSB as a teller, which eventually led her to the accounting department as the accounting clerk. Shortly thereafter she was promoted to staff accountant followed by accounting supervisor. Poirier was later promoted to assistant VP, controller and now holds the title of VP, controller.

When she is not at CSB, Poirier enjoys reading, watching movies and spending time with her dog, Harley, and her daughter, Sabrina. Additionally, since adopting Harley at the Sterling Animal Shelter, she often donates to the shelter as well as to other various charities through CSBs programs.

Nicole Martin has been promoted to the role of senior vice president (SVP), branch administration officer. After contributing to the growth of the retail side of Clinton Savings Bank for the last several years, Martin will broaden relationships with the banks customers and business partners in the community while continuing to be responsible for the operation and customer service performance of the branches.

Since Ms. Martin joined our team in 2016, she has worked tirelessly to improve the retail aspects of CSB as well as the function of our branches, said Robert Paulhus Jr., president and CEO of Clinton Savings Bank. She has used her strong administrative skills and extensive retail experience to elevate Clinton Savings Bank overall brand and retail staff. We are very lucky to have an employee like Ms. Martin who has a tenacious work ethic that heavily contributes to Clinton Savings Banks success.

With over 30 years of banking experience, Martin joined CSB as vice president, retail sales manager. During her time with the bank, one of Martins most notable accomplishments at CSB was building and establishing goals to achieve growth, profitability and operational efficiency. Martin attended Worcester State University, and now live in Clinton and enjoys spending time with her two children.

Samantha Ingui was promoted to operations officer. She began working at CSB in 2006 as a teller at the Sterling branch, which led her to becoming a teller supervisor, then assistant branch manager in both Sterling and Bolton. Ingui joined the operations department in 2015 as the operations supervisor.

Ms. Ingui has demonstrated her vast knowledge of CSB products and services, system capabilities and compliance requirements, while effectively supervising a staff of 6 employees, explained Pam Cutler, vice president/operations manager. "Her knowledge base and the experience shes gained over the past 14 years in retail and operations make Ms. Ingui an invaluable resource for her staff and peers.

Ingui's responsibilities as the new operations officer include, but are not limited to, overseeing all aspects of deposit operations including deposit accounts, card services, online banking, cash management, ACH and IRA. She is also responsible for training staff on regulatory requirements, products, policies and procedures.

In her free time, she enjoys going to the beach, attending concerts and spending time with her husband, Ryan, and their two children. Additionally, she is secretary of the Houghton Elementary School PTO Board in Sterling.

Two local students were named to the fall dean's list at the University of the South: Clare McNamara, of Bolton, daughter of Elizabeth and Frank McNamara Jr.; and Mary Watkins, of Sterling, daughter of Laura and John Watkins.

Several local residents were named to the fall dean's list at the University of New Hampshire:

Berlin: Ryliegh Scott, high honors, majoring in exercise science;

Bolton: Ashley Masse, honors, majoring in psychology; Caleb McClure, highest honors, majoring in psychology; Jill Conry, high honors, majoring in business administration:accounting; Elena Barshak, high honors, majoring in English; and Hannah Roth, highest honors, majoring in human development and family studies;

Boylston: William Hodgdon, high honors, majoring in geography;

Clinton: Christopher Saunders, honors, majoring in English literature;

Lancaster: Haley Taddeo, honors, majoring in sustainable agriculture and food systems; and Matthew Morrison, high honors, majoring in business administration;

Sterling: Connor Pauplis, highest honors, majoring in biomedical science and veterinary science; Samuel Marcoulier, highest honors, majoring in homeland security; Jack Prendergast, honors, majoring in undeclared; and Sophie Citro, high honors, majoring in psychology; and

West Boylston: Molly Krause, high honors, majoring in occupational therapy; and Nicholas Pichierri, high honors, majoring in English.

Six local residents were named to the fall dean's list at Northeastern University:

Berlin: Sanjana Sankar, majoring in chemical engineering/ biochemistry; and Lauren Walsh, majoring in mathematics

Bolton: Benjamin Fox, majoring in computer engineering; Isabella Susi, majoring in ecology and evolutionary biology; and Rachel Fox, majoring in mechanical engineering; and

Clinton: Smeet Patel, majoring in mechanical engineering.

Four local residents were named to the fall dean's list at Hofstra University: William Cubero, of Bolton; Gianna Direda, of Sterling; Audra Doolin, of Clinton; and Julia Wachtel, of Bolton.

Nicholas Galle, of Sterling, was named to the fall dean's list at Marquette University. Galle is pursuing a bachelor's degree in journalism.

Two residents were named to the fall dean's list at Colby College: Andrew Macdonald, Class of 2021, who attended Cushing Academy and is the son of Norman and Rebecca MacDonald, of Bolton; and Connor Smith, Class of 2020, who attended Bancroft School and is the son of Kelly Smith and Debra Twehous, of Lancaster.

Kate Burman, of Clinton, was named to the Champlain College fall dean's list.

Victoria Brandvold, of Bolton, was named to the fall dean's list at Muhlenberg College.

Two residents were named to the fall dean's list at The University of Hartford: Brooke Diefenbach, of Lancaster, and Andrew Wilcox, of Boylston.

Submit your Neighbor to Neighbor items to: clintonitem@yahoo.com or The Item, c/o Gannett, 100 Front St., fifth floor, Worcester, MA 01608.

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Neighbor to Neighbor - The Item - Worcester Telegram

First presidential search forum canceled due to inclement weather – OSU – The Lantern

The first of three public forums for the universitys presidential search was canceled Feb. 12 for inclement weather. Credit: Andre White | Lantern Reporter

The presidential search forums are off to a slippery start.

The first of three public forums for the universitys presidential search was canceled Wednesday due to inclement weather when fewer than 10 people attended at the Biomedical Research Tower. Those who remained after the cancellation announcement were invited to voice their opinions to Lewis Von Thaer and Susan Olesik, members of the presidential search committee.

At 4:04 p.m., Ohio State Emergency Management issued a winter weather advisory, effective until 10 a.m. due to a possible 2 inches of snow. The university has yet to announce if the forum will be rescheduled.

Von Thaer, university trustee and chair of the selection subcommittee, and Olesik, professor of chemistry and biochemistry and co-chair of the advisory subcommittee, are hosting the forums to gather public input on qualities, skills, attributes and experiences the university community is looking for in the next president, according the Board of Trustees website.

Among those present was Dr. Edmund Mroz, research associate professor of otolaryngology, who raised concerns about the universitys national and global standing among research institutions.

If Ohio State wants to become a world-class university, as opposed to being one which I think presently is seen as being more regional, then it has to have a president who is going to be able to work with the trustees, work with the schools within the university and have policies that will make that possible, Mroz said.

Sumaya Hamadmad, an ophthalmology research assistant at the university, said her main concern was Ohio States Family and Medical Leave Policy, which allows for 12 weeks of job-protected parental leave, according to the universitys Parental Care Guidebook.

I think it should be at least three months or maybe more, Hamadmad said.

The two remaining forums will take place from 2 to 3 p.m. Friday in Thompson Library and from 2 to 3 p.m. Feb. 19 in the U.S. Bank Conference Theater at the Ohio Union, according to the Board of Trustees website.

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First presidential search forum canceled due to inclement weather - OSU - The Lantern

Automatic Veterinary Biochemistry Analyzer Market Analysis by Key Players, Types, Applications and Growth Opportunities to 2025 – TheFinanceTime

Automatic Veterinary Biochemistry Analyzer market research report provides the details about Industry Chain structure, Market Competition, Market Size & Share, SWOT Analysis, Technology, Cost, Raw Materials, Consumer Preference, Development & Trends, Regional Forecast, Company & Profile and Product & Service.

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The main objectives of the research report elaborate the overall market overview on Automatic Veterinary Biochemistry Analyzer market dynamics, historic volume and value, robust market methodology, current & future trends, Porters Five Forces Analysis, upstream and downstream industry chain, new technological development, cost structure, government policies & regulations, etc. Major companies, company overview, financial data, products and services, strategy analysis, key developments market competition, industry competition structure analysis, SWOT Analysis, etc.

Further Automatic Veterinary Biochemistry Analyzer market research report provides regional marketanalysis with production, sales, trade & regional forecast. it also provides market investment plan like product features, price trend analysis, channel features, purchasing features, regional & industry investment opportunity, cost & revenue calculation, economic performance evaluation etc.

The Automatic Veterinary Biochemistry Analyzer industry development trends and marketing channels are analyzed. Finally, the feasibility of new investment projects is assessed, and overall research conclusions offered.

Report Scope

The tunnel ventilation market has been segmented based on different types and application. In order to provide a holistic view on the market current and future market demand has been included in the report.

Major players covered in this report: Biochemical Systems International, BPC BioSed, Carolina Liquid Chemistries, Abaxis Europe, AMS Alliance, Randox Laboratories, Rayto Life and Analytical Sciences, Scil Animal Care, Crony Instruments, DiaSys Diagnostic Systems, Eurolyser Diagnostica, Gesan Production, Heska, Idexx Laboratories, LITEON IT Corporation, Shenzhen Icubio Biomedical Technology, URIT Medical Electronic,

Major players profiled in the report are Biochemical Systems International, BPC BioSed, Carolina Liquid Chemistries, Abaxis Europe, AMS Alliance, Randox Laboratories, Rayto Life and Analytical Sciences, Scil Animal Care, Crony Instruments, DiaSys Diagnostic Systems, Eurolyser Diagnostica, Gesan Production, Heska, Idexx Laboratories, LITEON IT Corporation, Shenzhen Icubio Biomedical Technology, URIT Medical Electronic, .

On the basis of products, report split into, Automatic Veterinary Biochemistry Analyzer.

On the basis of the end users/applications, this report focuses on the status and outlook for major applications/end users, consumption (sales), market share and growth rate for each application, including Pet Hospital, Veterinary Station, Other, .

Different regions covered in this market research report are North America, Europe, Asia Pacific, Middle East & Africa, Latin America etc. Major Countries are United States, Canada, Germany, France, United Kingdom, Russia, Italy, Spain, Rest of Europe, China, India, Japan, Rest of Asia Pacific, GCC, South Africa, Rest of Middle East & Africa, Brazil, Argentina, Rest of Latin America etc.

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Automatic Veterinary Biochemistry Analyzer Market Analysis by Key Players, Types, Applications and Growth Opportunities to 2025 - TheFinanceTime

Januarys Rotary Youth of the… – Renton Reporter

Rotary members recognize three Renton School District high school students each month as Youth of the Month.

After being selected by counselors at each of the districts three comprehensive high schools, a selection committee of Rotary members review applications and interview students to identify those who will be selected as Youth of the Month.

The award is given to students who possess leadership abilities, maintain a good grade point average, participate in school activities and volunteer in their community.

January Rotary Youth of the Month are:

Megan Fung

Senior at Hazen High School

Megan holds a 3.9 GPA; she has been involved in Band, Key Club, HOSA, STEM Club and National Honor Society. She has received Solo and Ensemble Band ratings of Excellent and Superior and Outstanding Marcher Award.

Megan volunteers with the Bellevue Arts Museum, KidsQuest, local schools, Seattle Reign and many other fundraising events in the community.

She plans to attend a four-year university to major in a STEM field, like engineering and would like to intern at labs during her college years to gain experience and prepare for a career after she completes her degree. At this time, she hopes to become a chemical engineer.

Lauren Huynh

Senior at Hazen High School

Lauren holds a 3.9 GPA; she has been involved in Hazen Drill Team, Key Club, Philharmonic Orchestra, National Honor Society, Gordy Guides and Earth Corps. She has received Hazen Academic All-Star (multiple times), Soundview Orchestra Superior Ratings, Drill Team Academic State Champions, Varsity Letters, District and State Drill Awards, and 2019 National Drill Champion.

Outside of school, Lauren has been taking piano and viola lessons for many years.

She plans to attend a four-year college or university to study architecture or design and is interested in working as an interior designer for staging homes, hotels or businesses.

Connor Donahue

Senior at Lindbergh High School

Connor holds a 3.9 GPA; he has been involved in Key Club, National Honor Society, Class Senator, College Access Now, Eagle Crew and Lindbergh Swim. He has received AP Scholar with Distinction, Perfect Score-SAT II World History, Department Student of the Month, Outstanding Junior Award, OSHA and Microsoft JAVA Certification, Eagle of the Year Award, and State and District Swim placements/awards.

Connor works part-time as a lifeguard for the City of Renton and volunteers with Birthday Dreams and the Chinook Aquatic Club.

Hes planning to attend a private four-year college to pursue a degree in engineering or economics and is interested in a career in a STEM related field such as biochemistry or nuclear engineering.

Samirah Apdalhaliem

Senior at Renton High School

Samirah holds a 3.9 GPA; she has been involved in HOSA Club, Renton Peer Mentor, Renton Multicultural Festival and Renton High Tennis. She has received Honor Roll, Department Award and Citizenship/Academic Award.

Samirah works at the Samena Swim and Recreation Club as a front desk member and has spent time volunteering with the Woodland Park Zoo, Cham Refugee Community, Fred Hutchinson Cancer Research Center and the Bill and Melinda Gates Foundation.

She is planning to attend a four-year university, in Washington, majoring in Biology-Physiology. She hopes to continue her education to attend the University of Washington Medical School and pursue a career in medicine to give back to her community.

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Januarys Rotary Youth of the... - Renton Reporter