Understand the source comparison
Best Peptides for Wrist Pain: Application Comparison
| Peptide | Primary Mechanism | Typical Dosage | Injection Frequency | Best Use Case | Storage Requirement | Professional Assessment ||—|—|—|—|—|—|| BPC-157 | Upregulates VEGF and FGF receptors; accelerates collagen synthesis and angiogenesis | 250–500 mcg/day
This page preserves a source comparison for education. It does not add a rating, recommendation or clinical judgment.
- | Peptide | Primary Mechanism | Typical Dosage | Injection Frequency | Best Use Case | Storage Requirement | Professional Assessment ||—|—|—|—|—|—|| BPC-157 | Upregulates VEGF and FGF receptors; accelerates collagen synthesis and angiogenesis | 250–500 mcg/day subcutaneous or IM | Twice daily (4-hour half-life) | Acute tendon tears, ligament sprains where rapid structural repair is priority | Refrigerate 2–8°C; use within 28 days post-reconstitution | Most studied for tendon-to-bone healing. Strongest evidence base for acute injuries || TB-500 | Binds actin to promote cell migration; reduces fibrosis and scar tissue formation | 2–2.5 mg twice weekly (loading), then weekly | Twice weekly for 4–6 weeks, then weekly | Chronic overuse injuries, restricted ROM, fibrotic tissue | Refrigerate 2–8°C; longer shelf life than BPC-157 | Best for preventing excessive scarring. Reduces long-term stiffness || GHK-Cu | Chelates copper for collagen cross-linking; downregulates TGF-beta and inflammatory