Research into Peptides
Your direct source for raw data, clinical breakdowns, and industry updates on the frontier of peptide science.
*For research purposes only - not for human consumption*
Recovery & Repair Research
Acceleration of Open-Wound Healing and Ischemic Tissue Salvage with GHK-Cu (Copper Peptide)
This clinical human trial evaluated GHK-Cu's ability to heal severe, chronic open wounds (diabetic ulcers) that traditionally resist conventional medical treatment.
ARA 290’s effect on Neuropathic Recovery
This randomized, double-blind human trial evaluated ARA-290's ability to repair damaged nerve fibers and alleviate chronic neuropathic pain in patients suffering from Small Fiber Neuropathy (SFN).
The Effect of KPV on Acceleration of Dermal Wound Healing and Scar Minimization
This study evaluates how KPV reduces the inflammatory phase of wound healing to accelerate skin repair and prevent the formation of dense scar tissue (keloids).
The Effect of TB-500 Fragment (17-23) on Isolation of the Core Migration and Wound-Healing Sequence
This foundational molecular study proved that the 17-23 fragment is the precise sequence responsible for driving the peptide's famous tissue-repair traits.
Acceleration of Soft-Tissue and Dermal Tensile Recovery with TB-500 (Thymosin Beta-4)
This study demonstrates the foundational structural mechanism of the peptide in driving rapid re-epithelialization and physical wound closure speed.
The Effect of BPC-157 on Complete Junctional and Muscle-to-Bone Reattachment
This peer-reviewed systematic analysis evaluates BPC-157's ability to heal complex, interconnected musculoskeletal lesions simultaneously, specifically at difficult-to-heal muscle-to-bone junctions.