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TISSUE BIOLOGY & EXTRACELLULAR MATRIX REMODELING

Regenerative Peptides.

Bioactive peptides involved in angiogenesis, collagen synthesis, and cell migration.

Regenerative series peptides are fundamental for in vitro and in vivo studies on connective tissue, tendon, muscle, and dermal cellular remodeling. Hallmark compounds such as BPC-157 and GHK-Cu copper tripeptide regulate fibroblast migration and VEGF growth factor expression.

≥99%HPLC Verificado
24-72HEntrega España
0% ADUANASEnvíos Intra-UE

AVAILABLE RESEARCH COMPOUNDS

3 Compounds
BPC-157
BPC-04272610 mg
Metabolic
>99%
OUT OF STOCK

bpc-157

accelerates angiogenesis and cellular migration, resulting in rapid regeneration of tendons, ligaments, muscles, bones, and optimized wound healing.

PRICE€29.95/ 10 mg
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ghk-cu
GHK-05182650 mg
Dermal
≥99% HPLC

ghk-cu

copper enhances collagen and elastin synthesis, resulting in better skin, hair, eyelashes, scars, and stretch marks.

FROM€34.95/ 50 mg
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melanotan I
MEL-05032610 mg
Dermal
≥99% HPLC
OUT OF STOCK

melanotan i

activates the mc1r receptor to stimulate eumelanin, resulting in a safer tan, advanced cellular photoprotection, and increased resistance against uv radiation damage.

PRICE€29.95/ 10 mg
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PRECLINICAL PHARMACOLOGICAL ANALYSIS

Regenerative Cascades and Growth Factor Signaling

BPC-157 upregulates VEGFR2 receptor expression and activates the FAK-paxillin intracellular pathway, promoting endothelial proliferation. GHK-Cu downregulates pro-inflammatory cytokines while balancing matrix metalloproteinases (MMP-1, MMP-2) and stimulating type I/III procollagen production.

Selective VEGFR2-mediated angiogenic endothelial cellular sprouting.
Upregulation of glycosaminoglycan and collagen biosynthesis.
Enzymatic gastric-juice stability verified for BPC-157 pentadecapeptide.
100% chelated copper saturation index in GHK-Cu formulations.

FREQUENTLY ASKED QUESTIONS

What is BPC-157?

BPC-157 is a 15-amino acid pentadecapeptide fragment derived from human gastric juice protein BPC, known for its unique molecular stability in physiological solutions.