LORIUM · 10mg x 50mg x 10mg x 10mg LYOPHILISED VIALKlow
KLOW is an elite, four-peptide matrix combining BPC-157, GHK-Cu, KPV, and TB-500, engineered to deliver the ultimate synergy in cellular healing and tissue regeneration. By targeting advanced musculoskeletal repair and downregulating inflammatory pathways, this protocol accelerates recovery, restores structural integrity, and promotes deep dermal renewal.
Researched effects
Effects observed in the cited literature. Individual results are not guaranteed. Statements have not been evaluated by the FDA.
Advanced Musculoskeletal Repair
Accelerates the healing of complex tendon, ligament, and bone injuries.
Systemic Inflammation Control
Suppresses chronic inflammatory pathways and stabilizes cellular stress.
Collagen & Elastin Synthesis
Stimulates structural matrix production for superior skin firmness and density.
Quad-Peptide Synergy
Harnesses BPC-157, GHK-Cu, KPV, and TB-500.
Fibrosis & Scar Mitigation
Limits scar tissue formation while promoting organized tissue remodeling.
Gastrointestinal Protection
Utilizes KPV and BPC-157 to target and repair mucosal lining integrity.
Enhanced Athletic Recovery
Drastically reduces downtime after intense physical trauma or surgery.
Specifications
Clinical references
- Dalmasso, G., Nguyen, H.T., Yan, Y., Laroui, H., Charania, M.A., Ayyadurai, S., Sitaraman, S.V., & Merlin, D. (2008). PepT1-mediated tripeptide KPV uptake reduces intestinal inflammation. Gastroenterology, 134(1), 166-178. DOI: 10.1053/j.gastro.2007.10.026
- Chang, C.H., Tsai, W.C., Hsu, Y.H., & Pang, J.H.S. (2018). Pentadecapeptide BPC 157 enhances the growth hormone receptor expression in tendon fibroblasts. Molecules, 23(11), 3066. DOI: 10.3390/molecules23113066
- Pickart, L., Vasquez-Soltero, J.M., & Margolina, A. (2012). The human tripeptide GHK-Cu in prevention of oxidative stress and degenerative conditions of aging: implications for cognitive health. Oxidative Medicine and Cellular Longevity, 2012, 324832. DOI:10.1155/2012/324832
- Philp, D., Badamchian, M., Scheremeta, B., Nguyen, M., Goldstein, A.L., & Kleinman, H.K. (2004). Thymosin β4 promotes angiogenesis, wound healing, and hair follicle development. Mechanisms of Ageing and Development, 125(2), 113-115. DOI: 10.1016/j.mad.2003.11.005
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