While most preclinical pharmacologists and biotechnology experts may not always agree, peptide therapeutics provides noticeable commercial success. Over 50 peptide drugs, with yearly sales of more than $1 billion each, were sold in 2010. These drugs have ability to slow down metabolic diseases and tumor growth. Scientists are carrying out research to establish whether peptides can function as vaccines, contraceptives, and antimicrobials. The quality of health care services is set to improve with the peptide drug discovery and its development.
Being a naturally occurring molecule, peptide has numerous sources. For example, it is possible to mine it from both unicellular and multicellular organisms. It can be derived from chemical and recombinant libraries. Peptides are chemically more diverse than other categories of biological molecules. The digestive juices tend to degrade this drug at a higher rate. Therefore, they are introduced directly into the bloodstream through injection. They are safer and more reliable than synthetic medications. They target sources of infection directly due to their high selectivity and specificity.
After peptides undergo the degradation process, they produce proteinogenic amino acids. Unlike artificial medications that produce toxic metabolites, these drugs are safe. The toxic metabolites cause series side effects and can sometimes cause other complications such as ulcers. The safety nature of peptides might have facilitated its popularity that is being witnessed. Its short half-life property has some health advantages since the human body does not have to deal with metabolites for a long time.
In contrast to antibodies and bigger proteins, peptides have ability to penetrate deep into the tissue at a fast rate. Additionally, their manufacturing cost is significantly lower than recombinant antibodies and proteins. Due to their high stability and activity, these drugs can be put in storage at a room temperature. Most of them are acquired from polypeptides or protein and they can intermingle with membrane proteins. Activation or deactivation of some target receptors is possible when small amount of peptides are utilized. Currently, very few peptides antagonists that promote ligand-receptor reactions are available on the market.
The health care market has experienced a significant increase in the number of peptides that are launched each year. Most of them are peptide hormones and derivatives that promote hormone action. The increase in popularity of these drugs began back in 2010. However, some of medications that were launched in 2010 have been withdrawn.
Currently, scientists are conducting a series of clinical trials to determine the efficacy of peptides. Those under trials are believed to have properties of healing several infectious disease and oncology. They are introduced into the body through intravenous and subcutaneous techniques.
The major challenge that is hindering commercialization of peptides is its administration procedure and easy degradation. Researchers are trying to come with solutions that allow administration of peptides in a form that is not easily degraded in the digestive system. The collaboration of stakeholders in the health industry and scientist is likely to bear fruits.
Scientists have resulted to peptide optimization as an approach of making this drug stable. An encapsulated form of this medication was introduced into the digestive system of animals and was found to work. Degradability is significantly lowered by encapsulating the drug with mesoporous silica particles.
Being a naturally occurring molecule, peptide has numerous sources. For example, it is possible to mine it from both unicellular and multicellular organisms. It can be derived from chemical and recombinant libraries. Peptides are chemically more diverse than other categories of biological molecules. The digestive juices tend to degrade this drug at a higher rate. Therefore, they are introduced directly into the bloodstream through injection. They are safer and more reliable than synthetic medications. They target sources of infection directly due to their high selectivity and specificity.
After peptides undergo the degradation process, they produce proteinogenic amino acids. Unlike artificial medications that produce toxic metabolites, these drugs are safe. The toxic metabolites cause series side effects and can sometimes cause other complications such as ulcers. The safety nature of peptides might have facilitated its popularity that is being witnessed. Its short half-life property has some health advantages since the human body does not have to deal with metabolites for a long time.
In contrast to antibodies and bigger proteins, peptides have ability to penetrate deep into the tissue at a fast rate. Additionally, their manufacturing cost is significantly lower than recombinant antibodies and proteins. Due to their high stability and activity, these drugs can be put in storage at a room temperature. Most of them are acquired from polypeptides or protein and they can intermingle with membrane proteins. Activation or deactivation of some target receptors is possible when small amount of peptides are utilized. Currently, very few peptides antagonists that promote ligand-receptor reactions are available on the market.
The health care market has experienced a significant increase in the number of peptides that are launched each year. Most of them are peptide hormones and derivatives that promote hormone action. The increase in popularity of these drugs began back in 2010. However, some of medications that were launched in 2010 have been withdrawn.
Currently, scientists are conducting a series of clinical trials to determine the efficacy of peptides. Those under trials are believed to have properties of healing several infectious disease and oncology. They are introduced into the body through intravenous and subcutaneous techniques.
The major challenge that is hindering commercialization of peptides is its administration procedure and easy degradation. Researchers are trying to come with solutions that allow administration of peptides in a form that is not easily degraded in the digestive system. The collaboration of stakeholders in the health industry and scientist is likely to bear fruits.
Scientists have resulted to peptide optimization as an approach of making this drug stable. An encapsulated form of this medication was introduced into the digestive system of animals and was found to work. Degradability is significantly lowered by encapsulating the drug with mesoporous silica particles.
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