Proponents claim it promotes healing of various tissues, including vascular and nerve tissue, potentially benefiting erectile function
BPC-157 is associated with pathways involved in angiogenesis and cellular regeneration processes, making it a subject of interest in research environments
Researchers are exploring how to use MSCs to repair tissues such as bone, tendon, ligament, and cartilage.[47] In several early tendon studies, researchers surgically created one-centimeter-long gap defects in rabbit tendons and then implanted composites of stem cells suspended in Type I collagen gel into the injuries.[2,3,15] In one study, MSC treated tendons were twice as strong as untreated tendons after 4, 8, and 12 weeks.[15] The treated tendons also had larger cross-sectional area and better aligned collagen fibers
We appreciate the funding support from National Heart Blood Lung Institute at the National Institutes of Health (NIH) award 1R15HL143545-01A1