There is a long history of cerebellar stimulation for dystonia-related behaviors [66,67,68,69,70,71], although due to much needed regulations, progress was unfortunately turbulent [72]
BPC-157 is investigated in preclinical research for its effects on tissue regeneration, angiogenesis, fibroblast migration, and cellular signaling across tendon, ligament, muscle, gastrointestinal, and vascular models
Six main photoproducts were detected (in the first step), mainly as a consequence of cleavage of a diazepinone ring followed by a rearrangement into a highly stable quinazoline structure, and then its modifications (e.g., hydroxylation)
And there are good reasons for it
Beyond structural repair, BPC-157 modulates nitric oxide (NO) synthase activity, stabilizing the balance from vasodilation to vasoconstriction in injured tissue