Pentadecapeptide BPC 157 2mg/vial / skype:bodybuilding848

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Product
Pentadecapeptide BPC 157 2mg/vial / skype:bodybuilding848
Posting date : Dec 16, 2015
Membership
Free Member Scince Dec 16, 2015
FOB Price
1
Min. Order Quantity
1g
Supply Abillity
100kg/mont
Port
shengzhen,HK
Payment Terms
T/T,Western union,Money Gram,Bitcoin
Package
discreet packing
Keyword :
Category
Contact
Noul
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Product Detail
Company Info
 
Quick Detail
Place of Origin
China [CN]
Brand Name
YC
HS-CODE
2937-19
Package & Delivery Lead Time
Package
discreet packing
Delivery Lead Time
1-2 days after receive your payments
Detailed Description
Pentadecapeptide BPC 157 2mg/vial / skype:bodybuilding848
 
Pentadecapeptide BPC 157, composed of 15 amino acids, is a partial sequence of body protection compound (BPC),
that is discovered in and isolated from human gastric juice.
The promoting effect of pentadecapeptide BPC 157 on tendon healing involves tendon outgrowth, cell survival, and cell migration.
Abstract:
Pentadecapeptide BPC 157, composed of 15 amino acids, is a partial sequence of body protection compound (BPC) that is discovered in and isolated from human gastric juice. Experimentally it has been demonstrated to accelerate the healing of many different wounds, including transected rat Achilles tendon. This study was designed to investigate the potential mechanism of BPC 157 to enhance healing of injured tendon. The outgrowth of tendon fibroblasts from tendon explants cultured with or without BPC 157 was examined. Results showed that BPC 157 significantly accelerated the outgrowth of tendon explants. Cell proliferation of cultured tendon fibroblasts derived from rat Achilles tendon was not directly affected by BPC 157 as evaluated by MTT assay. However, the survival of BPC 157-treated cells was significantly increased under the H2O2 stress. BPC 157 markedly increased the in vitro migration of tendon fibroblasts in a dose-dependent manner as revealed by transwell filter migration assay. BPC 157 also dose dependently accelerated the spreading of tendon fibroblasts on culture dishes. The F-actin formation as detected by FITC-phalloidin staining was induced in BPC 157-treated fibroblasts. The protein expression and activation of FAK and paxillin were determined by Western blot analysis, and the phosphorylation levels of both FAK and paxillin were dose dependently increased by BPC 157 while the total amounts of protein was unaltered. In conclusion, BPC 157 promotes the ex vivo outgrowth of tendon fibroblasts from tendon explants, cell survival under stress, and the in vitro migration of tendon fibroblasts, which is likely mediated by the activation of the FAK-paxillin pathway.
 
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