B7-33 peptide for sale – Click here to buy B7-33 6mg peptide at the bargain price of $70.00!
B7-33 is a new research peptide that is showing excellent benefits in a study in reducing fibrosis, in numerous acute and chronic diseases including heart disease, lung inflammation, and kidney disease. In addition, the B7-33 peptide shows evidence of strong anti-fibrotic effects. It is also, showing promise in other disorders, such as pregnancy preeclampsia, and vascular disorders.
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B7-33 peptide is a research chemical and is being studied as a treatment for fibrosis. The research peptide B7-33 is an artificial version of a naturally occurring protein in the body H2 relaxin. If you are searching for the research peptide B7-33 click here now! You will find we supply Peptide Sciences B7-33 peptide for sale at incredible prices. Plus, you will be guaranteed the best quality research peptide for all of your study needs.
How Does B7-33 Work?
B7-33 is a research peptide that comes from the larger, naturally occurring protein H2-relaxin. B7-33 is an artificial peptide that has anti-fibrotic properties. It mimics the protein relaxin related to insulin, has pleiotropic actions, and plays a part in the cardiovascular system, musculoskeletal, reproductive system, and others. The relaxin protein is a vasodilator and blood vessel growth stimulator.
Therefore with B7-33 giving similar functions means at present, all investigation is being taken seriously. Simply put, it could one day be a treatment of acute heart failure and fibrotic disorders. The unique structure of B7-33 is showing to be very effective in treating several diseases. It is affordable to produce due to its design and appears to have many advantages.
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Fibrosis and similar disorders are among the leading causes of death globally. Therefore there is a need for instant and improved anti-fibrotic treatments.
B7-33 is a breakthrough in science. It is a single-chain variant of H2 relaxin or B7-33. It is a stable product and easy to manufacture and improve its in vivo plasma half-life.
From tests with animals, the H2 relaxin has positive therapeutic potential for fibrosis and related disorders.
However, the H2 peptide has a complicated insulin-like 2 chain structure and makes the H2 peptide costly to manufacture.
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More tests with B7-33 show it replicas other actions of H2 relaxin linked to heart failure. Furthermore, it can modify and optimize B7-33 using a basic structure-based design in medicinal chemistry techniques such as stapling, lipidation, etc. All of this will improve in the half-life. Finally, B7-33 needs testing in clinically relevant experimental patients with cardiac fibrosis to summarize the potential anti-fibrotic activity.