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5.1The Repair Cascade & Regenerative Signaling Hemostasis, inflammation, proliferation and remodeling — mapping agents to phase Angiogenesis, fibroblast recruitment and extracellular matrix deposition Growth-factor biology: VEGF, PDGF and the TGF-β superfamily Fibrosis versus functional repair and the agents studied on each side of that line Tendon, ligament, cartilage and bone healing timelines and why they differ Nerve regeneration signaling and the peptides studied in that context Why load, rehabilitation and sleep remain the dominant variables in any repair protocol 5.2Core Reparative Peptides: BPC-157, TB-500 / Thymosin Beta-4, KPV BPC-157: sequence origin, angiogenic and cytoprotective signaling, gastrointestinal and musculoskeletal study models Thymosin beta-4 and TB-500: actin sequestering, cell migration, tissue remodeling TB4 fragment 1-4 (Ac-SDKP): the anti-fibrotic and angiogenic fragment studied separately KPV: the α-MSH C-terminal tripeptide and NF-κB and mast-cell pathways Pentadeca arginate and other marketed BPC analogs — what is and is not established about them Route-to-target reasoning: local versus systemic administration Current regulatory position of each agent, including PCAC recommendation status and its limits Evidence tier disclosure and consent language for tier-four agents 5.3Connective Tissue, Bone & Injury Recovery Protocols Structured intake for the musculoskeletal patient: imaging, diagnosis and surgical thresholds Tendinopathy, ligament sprain and post-operative recovery protocol design Osteoanabolic pharmacology: teriparatide and abaloparatide as approved comparators Cartilage and joint-directed protocols and the honest limits of the evidence Loading, eccentric rehabilitation and physical-therapy coordination Objective recovery metrics: range of motion, strength testing, return-to-activity criteria When the correct answer is orthopedic referral rather than a peptide 5.4Organ-Directed and Bioregulator Repair Peptides The Khavinson short-peptide bioregulator concept and its evidence base, including its geographic publication pattern Pulmonary-directed peptides: taxorest, bronchogen, chonluten Gut-barrier and thymic dipeptides: vilon, thymagen Vascular and cardiac peptides: vesugen, ventfort, cardiogen Cartilage, retinal and endocrine tissue complexes: sigumir, visoluten, suprefort RKH and short peptides studied in sepsis and systemic inflammation models Sourcing, quality and regulatory reality of the bioregulator category in the United States 5.5PRP, Exosomes and Combination Regenerative Procedures Platelet-rich plasma: preparation systems, platelet concentration, leukocyte content and activation Exosomes and extracellular vesicles: biology, product variability and the current US regulatory posture PDRN and polynucleotide agents in tissue and skin protocols Combining biologics with peptide protocols: sequencing, intervals and documentation Ultrasound guidance and injection accuracy for joint and tendon targets Procedural sterility, anesthesia and complication management Photographic and functional outcome documentation standards Module 6 · 4 lessons · 28 topics Immune, Gut & Inflammation Immune modulation, barrier integrity and inflammation resolution as one connected system — including post-viral and autoimmune protocol design, and the non-peptide adjuncts clinicians actually combine with peptides