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Daily Archives: August 4, 2015
Genetic engineering – Wikipedia, the free encyclopedia
Posted: August 4, 2015 at 2:57 pm
Genetic engineering, also called genetic modification, is the direct manipulation of an organism's genome using biotechnology. It is therefore a set of technologies used to change the genetic makeup of cells, including the transfer of genes within and across species boundaries to produce improved or novel organisms. New DNA may be inserted in the host genome by first isolating and copying the genetic material of interest using molecular cloning methods to generate a DNA sequence, or by synthesizing the DNA, and then inserting this construct into the host organism. Genes may be removed, or "knocked out", using a nuclease. Gene targeting is a different technique that uses homologous recombination to change an endogenous gene, and can be used to delete a gene, remove exons, add a gene, or introduce point mutations.
An organism that is generated through genetic engineering is considered to be a genetically modified organism (GMO). The first GMOs were bacteria generated in 1973 and GM mice in 1974. Insulin-producing bacteria were commercialized in 1982 and genetically modified food has been sold since 1994. Glofish, the first GMO designed as a pet, was first sold in the United States December in 2003.[1]
Genetic engineering techniques have been applied in numerous fields including research, agriculture, industrial biotechnology, and medicine. Enzymes used in laundry detergent and medicines such as insulin and human growth hormone are now manufactured in GM cells, experimental GM cell lines and GM animals such as mice or zebrafish are being used for research purposes, and genetically modified crops have been commercialized.
IUPAC definition
Process of inserting new genetic information into existing cells in order to modify a specific organism for the purpose of changing its characteristics.
Note: Adapted from ref.[2][3]
Genetic engineering alters the genetic make-up of an organism using techniques that remove heritable material or that introduce DNA prepared outside the organism either directly into the host or into a cell that is then fused or hybridized with the host.[4] This involves using recombinant nucleic acid (DNA or RNA) techniques to form new combinations of heritable genetic material followed by the incorporation of that material either indirectly through a vector system or directly through micro-injection, macro-injection and micro-encapsulation techniques.
Genetic engineering does not normally include traditional animal and plant breeding, in vitro fertilisation, induction of polyploidy, mutagenesis and cell fusion techniques that do not use recombinant nucleic acids or a genetically modified organism in the process.[4] However the European Commission has also defined genetic engineering broadly as including selective breeding and other means of artificial selection.[5]Cloning and stem cell research, although not considered genetic engineering,[6] are closely related and genetic engineering can be used within them.[7]Synthetic biology is an emerging discipline that takes genetic engineering a step further by introducing artificially synthesized material from raw materials into an organism.[8]
If genetic material from another species is added to the host, the resulting organism is called transgenic. If genetic material from the same species or a species that can naturally breed with the host is used the resulting organism is called cisgenic.[9] Genetic engineering can also be used to remove genetic material from the target organism, creating a gene knockout organism.[10] In Europe genetic modification is synonymous with genetic engineering while within the United States of America it can also refer to conventional breeding methods.[11][12] The Canadian regulatory system is based on whether a product has novel features regardless of method of origin. In other words, a product is regulated as genetically modified if it carries some trait not previously found in the species whether it was generated using traditional breeding methods (e.g., selective breeding, cell fusion, mutation breeding) or genetic engineering.[13][14][15] Within the scientific community, the term genetic engineering is not commonly used; more specific terms such as transgenic are preferred.
Plants, animals or micro organisms that have changed through genetic engineering are termed genetically modified organisms or GMOs.[16] Bacteria were the first organisms to be genetically modified. Plasmid DNA containing new genes can be inserted into the bacterial cell and the bacteria will then express those genes. These genes can code for medicines or enzymes that process food and other substrates.[17][18] Plants have been modified for insect protection, herbicide resistance, virus resistance, enhanced nutrition, tolerance to environmental pressures and the production of edible vaccines.[19] Most commercialised GMO's are insect resistant and/or herbicide tolerant crop plants.[20] Genetically modified animals have been used for research, model animals and the production of agricultural or pharmaceutical products. They include animals with genes knocked out, increased susceptibility to disease, hormones for extra growth and the ability to express proteins in their milk.[21]
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Benefits of Human Genetic Engineering – Popular Issues
Posted: at 2:57 pm
QUESTION: What are the benefits of human genetic engineering?
ANSWER:
The benefits of human genetic engineering can be found in the headlines nearly every day. With the successful cloning of mammals and the completion of the Human Genome Project, scientists all over the world are aggressively researching the many different facets of human genetic engineering. These continuing breakthroughs have allowed science to more deeply understand DNA and its role in medicine, pharmacology, reproductive technology, and countless other fields.
The most promising benefit of human genetic engineering is gene therapy. Gene therapy is the medical treatment of a disease by repairing or replacing defective genes or introducing therapeutic genes to fight the disease. Over the past ten years, certain autoimmune diseases and heart disease have been treated with gene therapy. Many diseases, such as Huntington's disease, ALS (Lou Gehrig's disease), and cystic fibrosis are caused by a defective gene. The hope is that soon, through genetic engineering, a cure can be found for these diseases by either inserting a corrected gene, modifying the defective gene, or even performing genetic surgery. Eventually the hope is to completely eliminate certain genetic diseases as well as treat non-genetic diseases with an appropriate gene therapy.
Currently, many pregnant women elect to have their fetuses screened for genetic defects. The results of these screenings can allow the parents and their physician to prepare for the arrival of a child who may have special needs before, during, and after delivery. One possible future benefit of human genetic engineering is that, with gene therapy, a fetus w/ a genetic defect could be treated and even cured before it is born. There is also current research into gene therapy for embryos before they are implanted into the mother through in-vitro fertilization.
Another benefit of genetic engineering is the creation pharmaceutical products that are superior to their predecessors. These new pharmaceuticals are created through cloning certain genes. Currently on the market are bio-engineered insulin (which was previously obtained from sheep or cows) and human growth hormone (which in the past was obtained from cadavers) as well as bio-engineered hormones and blood clotting factors. The hope in the future is to be able to create plants or fruits that contain a certain drug by manipulating their genes in the laboratory.
The field of human genetic engineering is growing and changing at a tremendous pace. With these changes come several benefits and risks. These benefits and risks must be weighed in light of their moral, spiritual, legal, and ethical perspectives. The potential power of human genetic engineering comes with great responsibility.
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Eugenics in Virginia: Buck v. Bell and Forced …
Posted: at 2:55 pm
Photograph of Supreme Court Justice Oliver Wendell Holmes. Courtesy of the Library of Congress. [1.1] Supreme Court Justice Oliver Wendell Holmes, Jr. in Buck v. Bell
It is better for all the world, if instead of waiting to execute degenerate offspring for crime or to let them starve for their imbecility, society can prevent those who are manifestly unfit from continuing their kind Three generations of imbeciles are enough. ~Oliver Wendell Holmes
Writing for the majority in the Supreme Courts affirmative decision of the Buck v. Bell landmark case, Oliver Wendell Holmes Jr. described Charlottesville native Carrie Buck as the probable potential parent of socially inadequate offspring, likewise afflicted stating that her welfare and that of society will be promoted by her sterilization.
Current scholarship shows that Carrie Bucks sterilization relied on a false diagnosis premised on the now discredited science of eugenics. It is likely that Carries mother, Emma Buck, was committed to a state institution because she was considered sexually promiscuous, that the same diagnosis was made about Carrie when she became an unwed mother at the age of 17 due to being raped, and that her daughter Vivian was diagnosed as not quite normal at the age of six months largely in support of the legal effort to sterilize Carrie.
2004 Claude Moore Health Sciences Library
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Virginia Eugenics – University of Vermont
Posted: at 2:55 pm
Number of victims
In total, 7325 individuals were sterilized in Virginia under its sterilization law. Of those sterilized about half were deemed mentally ill and the other half deemed mentally deficient. Approximately 62% of total individuals sterilized were female. Some estimate the total number of sterilizations as high as 8,300 individuals (Dorr 2006, p. 382).
Period during which sterilization occurred
Sterilization in Virginia occurred under state law between 1924 and 1979. It thus appeared to have continued such sterilizations longer than any other state (Landman 1932, pp. 83-4; Largent 2008, p. 80). There are known instances of eugenic sterilization before 1924 (Dorr 2008, p. 116).
Temporal pattern of sterilization and rate of sterilization
Although Virginia formally adopted a sterilization law in 1924, sterilization was not practiced widely until after the United State Supreme Court ruling against Carrie Buck in 1927. This ruling set a precedent on the legality of sterilization not only in Virginia but also throughout the nation. During the 1930s, immediately after this Supreme Court ruling, sterilization in Virginia occurred at its highest rate with approximately 13 sterilizations per 100,000 state residents. A 1938 report stated that 632 of the first 1,000 patients sterilized had been paroled, and that 812 of the same group were from impoverished families (Trent 1994, 217). After the 1930s prior to, during, and following WWII sterilization initially decreased and thereafter maintained a fairly constant rate. After this, sterilization rates dropped dramatically until the practice faded out and then was subsequently forced out of practice with the repeal of the 1924 act in 1974 and the additional removal of all mention of eugenic sterilization to prevent hereditary forms of mental illness that are recurrent from being passed on from Virginia code in 1979 (Dorr 2008, p. 221, Lombardo 2008b, p. 250). Compulsory sterilizations for non-eugenic purposes continue today, but under very strict regulations. A compulsory sterilization patient must be unable to give informed consent, in need of contraception, unable to use any other form of contraception, and permanently unable to raise a child (Lombardo 2008b, p. 267).
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Racial Integrity Act of 1924 – Wikipedia, the free …
Posted: at 2:55 pm
On March 20, 1924 the Virginia General Assembly passed two laws that had arisen out of contemporary concerns about eugenics and race: SB 219, titled "The Racial Integrity Act[1]" and SB 281, "An ACT to provide for the sexual sterilization of inmates of State institutions in certain cases", henceforth referred to as "The Sterilization Act". The Racial Integrity Act of 1924 was one of a series of laws designed to prevent inter racial relationships.
The Racial Integrity Act required that a racial description of every person be recorded at birth and divided society into only two classifications: white and colored (essentially all other, which included numerous American Indians). It defined race by the "one-drop rule", defining as "colored" persons with any African or Native American ancestry. It also expanded the scope of Virginia's ban on interracial marriage (anti-miscegenation law) by criminalizing all marriages between white persons and non-white persons. In 1967 the law was overturned by the United States Supreme Court in its ruling on Loving v. Virginia.
The Sterilization Act provided for compulsory sterilization of persons deemed to be "feebleminded," including the "insane, idiotic, imbecile, or epileptic."[2]
These two laws were Virginia's implementation of Harry Laughlin's "Model Eugenical Sterilization Law",[3] published two years earlier in 1922. The Sterilization Act was upheld by the U.S. Supreme Court in the case Buck v. Bell 274 U.S. 200 (1927). This had appealed the order for compulsory sterilization of Carrie Buck, who was an inmate in the Virginia State Colony for Epileptics and Feebleminded, and her daughter and mother.
Together these laws implemented the practice of "scientific eugenics" in Virginia.
In the 1920s, Virginia's registrar of statistics, Dr. Walter Ashby Plecker, was allied with the newly founded Anglo-Saxon Club of America in persuading the Virginia General Assembly to pass the Racial Integrity Law of 1924.[4] The club was founded in Virginia by John Powell of Richmond in the fall of 1922; within a year the club for white males had more than 400 members and 31 posts in the state.[5]
In 1923, the Anglo-Saxon Club founded two posts in Charlottesville, one for the town and one for students at the University of Virginia. It sought (and was successful in gaining) passage of legislation to classify all persons as belonging either to the "white" or "Negro" races. A major goal was to end "amalgamation" by racial intermarriage. Members claimed also to support Anglo-Saxon ideas of fair play. Later that fall, a state convention of club members was to be held in Richmond.[6]
The Virginia assembly's 21st-century explanation for the laws summarizes their development:
The now-discredited pseudo-science of eugenics was based on theories first propounded in England by Francis Galton, the cousin and disciple of famed biologist Charles Darwin. The goal of the "science" of eugenics was to improve the human race by eliminating what the movement's supporters considered hereditary disorders or flaws through selective breeding and social engineering. The eugenics movement proved popular in the United States, with Indiana enacting the nation's first eugenics-based sterilization law in 1907.[7]
In the following five decades, other states followed Indiana's example by implementing the eugenic laws. Wisconsin was the first State to enact legislation that required the medical certification of persons who applied for marriage licenses. The law that was enacted in 1913 generated attempts at similar legislation in other states.
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r/CryptoCurrency – reddit
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