COA

KLOW nothing more. nothing less.

KLOW is a research peptide blend combining GHK-Cu, BPC-157, TB-500, and KPV. Studied in research involving cellular signaling, melanocortin pathway activity, and regenerative biology pathways.

Purity >99.79%Form Lyophilized BlendNo Endotoxins

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80MG $160.00
Pharmacy $480.99 Save 67%
>99.79% Purity
cGMP-Compliant
SAME DAY SHIPPING
US MADE
Quantity Price Per Unit
5 – 9
10+

For research use only — not for human consumption, therapeutic, or diagnostic use. By adding to cart you acknowledge these terms.

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Double Validation HPLC + MS
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About This Compound

Deep technical insights for clinical research

Primary Research Applications

This compound is supplied strictly for in-vitro and preclinical research use only. Primary applications include the areas below.

Skin Barrier Integrity and Anti-Inflammatory Support

Reduces cutaneous inflammation and supports barrier function through peptide-mediated modulation of inflammatory signaling cascades.

Dermatological Health Research

Promotes healthy skin homeostasis through combined cytoprotective and anti-inflammatory mechanisms targeting epidermal renewal.

Research Community Feedback

"Consistency is paramount in our cellular model testing. Blank's peptides have maintained the tightest purity specs of any RUO vendor we've audited."

Dr. Julian Kessler

Lead Investigator, Biomatrix Labs

"The availability of detailed MS and HPLC data on the product page saved us two days of redundant internal verification. Professional grade synthesis."

Anika S. Singh

Synthetics Quality Control

"Finally, a supplier that doesn't hide behind consumer marketing. Stark, clear, and high-purity. Exactly what a modern lab needs."

Prof. David Emmerich

Applied Peptide Research

Complete The Protocol

Pairs & Supplies

The compounds and tools researchers stack with KLOW.

BACTERIOSTATIC WATER

BACTERIOSTATIC WATER

$10.00
Add to Cart
DSIP

DSIP

$65.00
Add to Cart
OXYTOCIN

OXYTOCIN

$60.00
Add to Cart

Peer-Reviewed Literature

Related Studies

BPC-157 · 2025

Emerging Use of BPC-157 in Orthopaedic Sports Medicine: A Systematic Review

HSS Journal

Analysis of 36 studies (1993–2024) found BPC-157 enhanced growth hormone receptor expression, angiogenic pathways, and reduced inflammatory cytokines with improved biomechanical outcomes in musculoskeletal injuries.

BPC-157 · 2019

Gastric Pentadecapeptide Body Protection Compound BPC 157 and Its Role in Accelerating Musculoskeletal Soft Tissue Healing

Cell and Tissue Research

Comprehensive review concluding that all BPC-157 studies demonstrate consistently positive and prompt healing effects for various traumatic and systemic soft tissue injuries including tendons, ligaments, and skeletal muscle.

BPC-157 · 2011

The Promoting Effect of Pentadecapeptide BPC 157 on Tendon Healing Involves Tendon Outgrowth, Cell Survival, and Cell Migration

Journal of Applied Physiology

BPC 157 significantly accelerated tendon explant outgrowth, increased cell survival under oxidative stress, and markedly increased in vitro migration of tendon fibroblasts in a dose-dependent manner.

BPC-157 · 2003

Gastric Pentadecapeptide BPC 157 Accelerates Healing of Transected Rat Achilles Tendon and In Vitro Stimulates Tendocytes Growth

Journal of Orthopaedic Research

BPC 157 improved tendon healing biomechanically (increased load-to-failure and elasticity), functionally, and microscopically — achieving superior fibroblast formation and collagen deposition.

BPC-157 · 2020

BPC 157 Rescued NSAID-Cytotoxicity Via Stabilizing Intestinal Permeability and Enhancing Cytoprotection

Current Pharmaceutical Design

BPC-157 counteracted NSAID-induced intestinal damage by stabilizing intestinal permeability, restoring cytoprotective prostaglandin systems, and recovering leaky-gut syndrome pathways.

TB-500 · 2004

Thymosin β4 Activates Integrin-Linked Kinase and Promotes Cardiac Cell Migration, Survival and Cardiac Repair

Nature

Thymosin β4 activated epicardial progenitor cells, inhibited myocardial cell death, stimulated vessel growth, and reduced cardiac scarring through integrin-linked kinase activation.

From the Lab

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