The worlds of medicine, science and technology have been drastically changed over the course of the past several decades. Even though the cure of such diseases as AIDS and diabetes has yet to be discovered, it is clear that scientists and other credible experts are on the right path towards reaching that goal sometime in the future. Encapsulation products are some of the innovative elements that have contributed greatly to these endeavors over time.
Licensed and trained experts have committed years to studying different encapsulation technologies with the hopes of working towards fulfilling those goals. Their main target has been to invent new techniques that can be used to protect islet cells that have been transplanted. Their tests and numerous experiments have worked towards promoting the long-term survival of those specific cells.
As insulin is able to stream out of a cell nutrients can efficiently find their way in because of these products. The makers of this technology strives to envelop cells into a casing of pure protection that would prevent damage. While the concept is simplistic in nature, putting it into action has been much more difficult.
Since their vigorous endeavors failed for many years in these experimentation, these scientists and experts within the field decided to implement Nano encapsulation instead. This process called for a tiny and thin layer of coating to be directly applied to the islet cell surface. Doing so increased the efficiency of the insulin being released into the bloodstream and further protected the islet cell that was being transplanted.
Multiple layers of coating are used to provide a disguise for these cells as they are being transplanted. That covering prevents them from being detectable as they roam throughout the body. By staying beneath the radar, their risk of becoming endangered by the immune system is greatly lowered and glucose is still able to be efficiently discovered by these cells within the bloodstream.
There is a vast difference between these two processes, but both of them are still very important to the overall objective. The traditional process that focused on encasing the cells without the new technology constructed the foundation on which the newer process with more updated technology was built. Before the actual objective can be reached, there will probably be even more modifications to these systems in the near future.
Finding a cure for diabetes and other related diseases was one of the main reasons why scientists put so much time and effort into developing encapsulation products. That goal has not been achieved yet so there is still more work that needs to be completed in this regard. Thanks to the world of technology, however, reaching that milestone is becoming more realistic over time.
Licensed and trained experts have committed years to studying different encapsulation technologies with the hopes of working towards fulfilling those goals. Their main target has been to invent new techniques that can be used to protect islet cells that have been transplanted. Their tests and numerous experiments have worked towards promoting the long-term survival of those specific cells.
As insulin is able to stream out of a cell nutrients can efficiently find their way in because of these products. The makers of this technology strives to envelop cells into a casing of pure protection that would prevent damage. While the concept is simplistic in nature, putting it into action has been much more difficult.
Since their vigorous endeavors failed for many years in these experimentation, these scientists and experts within the field decided to implement Nano encapsulation instead. This process called for a tiny and thin layer of coating to be directly applied to the islet cell surface. Doing so increased the efficiency of the insulin being released into the bloodstream and further protected the islet cell that was being transplanted.
Multiple layers of coating are used to provide a disguise for these cells as they are being transplanted. That covering prevents them from being detectable as they roam throughout the body. By staying beneath the radar, their risk of becoming endangered by the immune system is greatly lowered and glucose is still able to be efficiently discovered by these cells within the bloodstream.
There is a vast difference between these two processes, but both of them are still very important to the overall objective. The traditional process that focused on encasing the cells without the new technology constructed the foundation on which the newer process with more updated technology was built. Before the actual objective can be reached, there will probably be even more modifications to these systems in the near future.
Finding a cure for diabetes and other related diseases was one of the main reasons why scientists put so much time and effort into developing encapsulation products. That goal has not been achieved yet so there is still more work that needs to be completed in this regard. Thanks to the world of technology, however, reaching that milestone is becoming more realistic over time.
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