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Genetic Engineering
Genetic engineering is a type of technology that changes the genetic structure of cells. The process entails the transfer of genes within and across species boundaries to improve the organisms. There is complex manipulation of biological chemicals and genetic materials during the process (Berlatsky, 2013). The chemical blueprints that determine an organism character are genes. Transferring the genes from one organism to another carries along the character. The process of genetic engineering is able to give an organism targeted blend of new genes. The new blend of genes leads to a new blend of traits that may be rare or completely absent in nature and cannot be created by natural means.
Genetic engineering is beneficial to the health of people. The process of tissue engineering allows the growth and development of new tissue to replace the old tissue that do not function well. For example people with kidney failure with low chances of survival are given the hybrid kidney that has a high resistance to events that lead to the kidney failure, sepsis and infection. The individuals survive and live healthy (Merino, 2013). Using cell transplants to human beings helps them to remain alive when waiting for transplantation of an organ. The use of this process of cell transplants minimizes chances of loss of life. In addition, genetic engineering helps in creation of better vaccines that can prevent the infection of different diseases. For example a vaccine for fighting against infectious agents that cause genital herpes and cervical cancer can be created through genetic engineering.
Genetic engineering impacts the society positively. It is a sound economic investment that leads to large amounts of profits. It adds up to the gross domestic product of the country. The application of genetic engineering in pest control contributes largely to the society welfare. The population of targeted insects can be under control. The control of breeding of insects such as mosquitoes will help in prevention and elimination of malaria. With genetic engineering, a variety of materials can be produced from microorganism (Cohen, 2010). It is through the use of microorganisms that undergo an engineering process to manufacture special chemicals and commodities such as drugs and vaccines. The genetic therapy is permanent through the life of the individual affected. The transmission of the trans-gene to people of future generation through hereditary means occurs (Rice, 2013). For this case some people believe that in future genetic engineering will pose negative effects on people. However the risk of a fatal change is minimal since it would be the same to the change the parent receives; this would reduce dangers on the child.
Genetic engineering is the next step in human evolution. It is important to use the technology since with genetic engineering; there is improvement of human life through minimizing loss o lives by curing diseases (Berlatsky, 2013). Genetic engineering is evolving and more important discoveries that impact positively on human beings are coming up. The benefits to the society as a whole are immeasurable and this would lead to future development and high living standards of people. Genetic engineering is beneficial and need to be in practice.

Work Cited
Cohen, M. (2010). Genetic engineering. New York: Crabtree Pub
In Berlatsky, N. (2013). Genetic engineering. Detroit: Greenhaven Press.
In Merino, N. (2013). Genetic engineering
Rice, E. (2013). Genetic engineering. New York: Marshall Cavendish

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