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Body Protection Pharma Raw Materials Compound 157 Pentadecapeptide Bpc-157 / Tb-500 / Sermorelin

Good quality Test Sustanon 250 for sales
Good quality Test Sustanon 250 for sales
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Body Protection Pharma Raw Materials Compound 157 Pentadecapeptide Bpc-157 / Tb-500 / Sermorelin

China Body Protection Pharma Raw Materials Compound 157 Pentadecapeptide Bpc-157 / Tb-500 / Sermorelin supplier
Body Protection Pharma Raw Materials Compound 157 Pentadecapeptide Bpc-157 / Tb-500 / Sermorelin supplier Body Protection Pharma Raw Materials Compound 157 Pentadecapeptide Bpc-157 / Tb-500 / Sermorelin supplier

Large Image :  Body Protection Pharma Raw Materials Compound 157 Pentadecapeptide Bpc-157 / Tb-500 / Sermorelin

Product Details:

Place of Origin: China
Brand Name: Simeiquan
Certification: IOS9001
Model Number: 23423

Payment & Shipping Terms:

Minimum Order Quantity: 10vials
Price: 1USD
Packaging Details: Disguised package
Delivery Time: 1-3 working days
Payment Terms: T/T, Western Union, MoneyGram
Supply Ability: 1000vials per week
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Detailed Product Description
Purity: 99%min Application: Medical Grade
Appearance: White Crystals Mf: C13H22ClN
Cas No.: 100-83-4 Product Name: N-Acetyl-D-mannosamine
Color: White
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pharmaceutical active ingredients

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active pharmaceutical ingredient

Body Protection Compound-157 Pentadecapeptide Bpc-157

BPC 157 (Body Protection Compound-157) is a pentadecapeptide made up of 15 amino acids. The amino acids sequence in BPC 157 is similar to a portion of the human BPC amino acid sequence. Human BPC is found in the gastric juice. Experiments have shown that BPC 157 enhances the healing of wounds, including tendons wounds such as transected Achilles tendons of rats. The aim of this study was to investigate the probable mechanism that BPC 157 utilizes to accelerate the healing process in an injured tendon. The study used two group of tendon explants of which one group was cultured in a BPC 157-containing medium while the other group was cultured in a medium lacking BPC 157. These cultures were thereafter examined for tendon fibroblasts outgrowths. Such outgrowths indicated tendon regeneration.The results revealed that the explants' outgrowth was significantly accelerated in the culture containing BPC 157 as compared to the culture lacking BPC 157. Also, a MTT assay did show that BPC 157 does not directly affect cellular proliferation in a culture of rat-derived Achilles tendon. However, results also showed that BPC 157 significantly increased the survival of cells under oxidative stress. Furthermore, the Transwell filter migration assay showed that BPC 157 significantly increased in-vitro fibroblast migration in a dose-dependent fashion. Moreover, BPC 157 accelerated the dispersal of the fibroblasts in culture dishes in a dose-dependent manner.
Additionally, FITC-phalloidin staining was able to demonstrate that BPC 157 induces F-actin formation in fibroblasts. Likewise, Western blot analysis was able to detect the production and activation of paxillin and FAK proteins. The western blot analysis also showed that BPC 157 increases the extent of phosphorylation of paxillin and FAK proteins without affecting the amounts produced.
Thus, it can be concluded that BPC 157 enhances the ex-vivo growth and in-vitro cellular migration of fibroblasts derived from rat tendon explants. Moreover, BPC 157 also increases the probability of a cell surviving under oxidative stress. These actions of BPC 157 are probably mediated by the activation (through phosphorylation) of the proteinic FAK-paxillin pathway.

 

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