Monday, June 18, 2007

Human Insulin Produced by Recombinant DNA Technology

The transfer of a DNA fragment from one organism to a self-replicating genetic element is known as recombinant DNA technology. This process is also referred to as DNA cloning, molecular cloning and gene cloning. This process has been around since the 1970s, and today is practiced frequently in molecular biology labs.
One use for this technology is to create insulin, which is used by diabetics who cannot produce enough on their own. Insulin is produced and secreted by the beta cells of the pancreas' islets of Langerhans and functions to regulate the use and storage of food. The old method of creating insulin was to extract and purify abattoir by-product. This method had side effects of immune bodies producing antibodies against it, which in turn made the insulin inaffective.
Researchers eventually came upon the idea of synthesizing Humalin, and recombinant technology was just the method to use.
In the first step, a plasmid is removed from and E. Coli cell. A special enzyme then opens up this plasmid. The DNA coding for human insulin is inserted into the opened plasmid, which is then closed by another special enzyme (recombination). The recombined plasmid is introduced back into the E. Coli host cell where it divides into new identical cells. The implanted DNA stimulates the cell to produce insulin. Human insulin is the only animal protein to have been made in bacteria in such a way that its structure is absolutely identical to that of the natural molecule, thus reducing the possibility of complications resulting from antibody production.
Today, the majority of insulin dependent patients are now treated with genetically engineered recombinant human insulin. However, doctors and patients have become concerned about the increase in the number of hypoglycemic episodes experienced. Some patients have stated that their awareness of oncoming hypogylcemia attacks has decreased sinced switching.
Being able to use the recombinant method to produce human derived insulin has widely been an improvement for the majority of insulin users. Although many are happy with the new insulin, the fact that some people are not happy means that more studies and research needs to be conducted to ensure complication-free use by all.

5 comments:

Larry Frolich said...

Jaima, the work that you’ve done is superb. I wonder what happened with the rest. Are you planning to continue in the course. The lab project, especially is crucial. Please let me know what your plans are. I will still consider the project for credit, but please get it done soon,
LF


SELF/UNIT EVALUATION: : I didn’t see this in your blog. Please be sure you answer these questions for an easy 5 points. Send me an e-mail when you’ve answered them.
.

COMPENDIUM REVIEW 1: CELLS: This is an incredibly complete review. With references, lots of images, nicely organized according to book chapters. My only concern is a few parts that seem directly copied from other sources, and the only problem is that those should go in quotes and be referenced. Otherwise, great job—exemplary!!

COMPENDIUM REVIEW 2: GENETICS: Everything for comp. rev. 1 applies here.

MICROSCOPE LAB: This is an exemplary lab write-up. The image looks great. You include all the descriptions of the parts of the scope. You have a nice intro and conclusion. Great job1

DRAGON GENETICS: This lab is an exemplary job. Nice intro and conclusion, references and good explanations that put it all in perspective. The only thing missing is that the dragons have the same phenotype (look) and genes. Great job!

BUILD A CELL: The lab projects are crucial and you must do them—worth 60 points or almost one third of the unit. I didn’t see this in your blog. Send me an e-mail when it is posted.

ETHICAL ISSUE ESSAY: GENETIC ENGINEERING. I didn’t see this in your blog. Please be sure you this short essay for an easy 10 points. Send me an e-mail when you’ve answered them.


Please don’t forget to do your peer color group feedback on their ethical issues essays—you’ll probably find it interesting to see some other blogs also. And get started on Unit II if you haven’t already. Let me know if you have any questions or concerns about this feedback or your grades which can be seen on the YC Blackboard site.
LF

Amanda said...

Peer Evaluation:
According to the guidelines provided this essay fits in the baseline category.
1. What are the two best features of the essay? This essay describes the process of Recombinant DNA Technology with Human Insulin as an example. It also gives a thourough description of synthesizing Humalin.
2. What are two things that could most be improved? Begin essay with a introduction, and use your opinion/viewpoints of the issue.
3. What is something new that the essay made you think or reflect upon? Scientists are full of ideas, and this essay aims towards helping those with Diabetes.
4. What most surprised you in the essay? The whole process of DNA coding, host cell action which produces identical cells: resulting in insulin.

Nicole said...

Peer Evaluation:
1. What are the two best features of the essay? You did a great job discussing the making of humalin and insulin (and its use.)
2. What are two things that could most be improved? Well, your essay was short and sweet. You did great talking about one form of cloning. You could have gone in more depth because your essay was a bit short for such a complex issue. Maybe add in more from the other cloning practices.
3. What is something new that the essay made you think or reflect upon? Your essay talked mostly about those people suffering from diabetes. Insulin is key for those people and its one of many things scientists are trying to create to better help those in need.
4. What most surprised you in the essay? Mainly, I was most surprised at how the scientists go about creating insulin. It's a very complex process.

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