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KLOW (BPC-157 10mg + GHK-Cu 50mg + TB-500 10mg + KPV 10mg) — 80mg

$175.00Price
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Research-grade KLOW Blend, a four-peptide complex combining BPC-157 (10mg), GHK-Cu (50mg), TB-500 (10mg), and KPV (10mg) studied for tissue repair, extracellular matrix remodeling, skin regeneration, and anti-inflammatory signaling pathways. 80mg total lyophilized powder, 99%+ purity per component verified by Janoshik Analytical via HPLC and mass spectrometry.


  • For laboratory research use only.

  • Not for human or veterinary use.

  • Not intended for diagnosis, treatment, cure, or prevention of any disease.

  • Use only in controlled laboratory settings by qualified personnel following appropriate safety procedures.

  • The KLOW Blend builds on Durham Peptides' popular GLOW Blend by adding KPV, a tripeptide fragment of alpha-melanocyte-stimulating hormone studied for anti-inflammatory signaling. Where GLOW combines three compounds focused on tissue repair and skin regeneration, KLOW adds a fourth pathway — NF-κB and MAP kinase modulation — creating a more comprehensive research blend for investigators studying the intersection of repair, remodeling, and inflammatory regulation. Durham Peptides also carries each component individually: BPC-157, GHK-Cu, TB-500, and KPV.


    BENEFITS


    • Skin rejuvenation — GHK-Cu studied for collagen production and skin elasticity

    • Healing support — BPC-157 explored for tissue repair and angiogenesis

    • Regeneration — TB-500 linked to cellular migration and wound recovery

    • Anti-inflammatory signaling — KPV studied for NF-κB and MAPK pathway inhibition

    • Convenience — four compounds in a single vial, eliminating multi-vial reconstitution


    WHAT RESEARCHERS LOOK AT


    • GHK-Cu: copper peptide studied for collagen synthesis and extracellular matrix remodeling

    • BPC-157: gastric peptide fragment linked to healing and angiogenesis models

    • TB-500 (Thymosin Beta-4 fragment): studied for regeneration and wound repair

    • KPV (α-MSH 11-13): tripeptide studied for anti-inflammatory signaling via PepT1 transporter

    • Synergistic repair + anti-inflammatory effects of the quad-peptide combination

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