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Best Peptides to Heal Faster After Surgery Ranked: Feature Comparison
| Peptide | Primary Mechanism | Optimal Phase | Typical Dose Range (Research) | Evidence Strength | Recovery Time Reduction | Professional Assessment ||—|—|—|—|—|—|| BPC-157 | VEGF stabilization, angiogenesis promotion | Proliferation (days 5–21) | 200–500 mcg
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- | Peptide | Primary Mechanism | Optimal Phase | Typical Dose Range (Research) | Evidence Strength | Recovery Time Reduction | Professional Assessment ||—|—|—|—|—|—|| BPC-157 | VEGF stabilization, angiogenesis promotion | Proliferation (days 5–21) | 200–500 mcg daily | Strong. Multiple animal models, limited human data | 40–60% faster wound closure | Best first-line choice for vascular-dependent healing. Tendon, ligament, deep tissue || TB-500 | Actin binding, cell migration, stem cell differentiation | Proliferation to early remodeling (days 5–28) | 2–2.5 mg twice weekly initial, then weekly | Moderate. Consistent animal data, anecdotal human reports | 30–45% reduction in closure time | Strongest for large surface wounds and scar prevention. Pairs well with BPC-157 || GHK-Cu | MMP upregulation, collagen remodeling, antioxidant activity | Remodeling (weeks 3–12) | 1–2 mg daily (injectable or topical) | Strong. Decades of wound healing research | 50% scar width reduction, 70% collagen de