StackR800

Recovery
A regenerative peptide supporting tissue repair, gut integrity, and accelerated recovery.
R550
Recommended by the Stack Finder in
Gastric pentadecapeptide
The most widely used recovery peptide, with extensive animal data on tendon, ligament and gut healing.
Accelerated tendon healing in rats by increasing tendon-cell survival and migration.
Chang CH et al. The promoting effect of pentadecapeptide BPC 157 on tendon healing involves tendon outgrowth, cell survival, and cell migration. J Appl Physiol. 2011;110:774-780. doi:10.1152/japplphysiol.00945.2010
Review of gut-protective and healing effects across animal models, mostly from a single research group in Zagreb.
Sikiric P et al. Stable gastric pentadecapeptide BPC 157: novel therapy in gastrointestinal tract. Curr Pharm Des. 2011;17:1612-1632. doi:10.2174/138161211796196954
Small uncontrolled case series reported reduced knee pain after intra-articular injection in 12 patients.
Lee E, Padgett B. Intra-articular injection of BPC 157 for multiple types of knee pain. Altern Ther Health Med. 2021;27(4):8-13.
A regenerative peptide supporting tissue repair, gut integrity, and accelerated recovery.
BPC-157 10mg is a synthetic peptide derived from a naturally occurring protective protein found in the human gastric system. It is widely explored for its role in supporting tissue repair, gut health, and recovery from injury or physical stress.
Rather than acting on a single pathway, BPC-157 is known for its broad regenerative signalling, making it a cornerstone peptide for recovery-focused and resilience-driven wellness strategies.
BPC-157 (Body Protection Compound-157) is a stable peptide fragment originally identified in gastric juice. It plays a role in cellular signalling related to tissue protection, repair, and inflammation modulation.
Its unique profile has made it particularly relevant for individuals focused on healing, recovery, and maintaining structural and digestive integrity over time.
BPC-157 is commonly explored for its ability to support:
Soft-tissue and connective-tissue repair
Gut lining integrity and digestive resilience
Recovery from injury, strain, or overuse
Tendon, ligament, and muscle recovery
By supporting both local tissue repair and systemic recovery processes, BPC-157 aligns with a longevity-focused approach to physical resilience rather than symptom-based or short-term interventions.
• Supports tissue repair and recovery
• Promotes gut integrity and digestive resilience
• Assists tendon, ligament, and muscle healing
• Supports recovery from injury or physical stress
• Longevity-aligned approach to structural health
BPC-157 may be well suited for individuals who:
• Are recovering from injury, strain, or chronic overuse
• Experience digestive or gut-related challenges
• Train regularly and prioritise recovery
• Want to support connective-tissue and soft-tissue health
• Prefer regenerative support over short-term symptom relief
This peptide is commonly chosen by those seeking long-term resilience, repair, and recovery support.
• Peptide: BPC-157
• Amount: 10mg per vial
• Format: Lyophilised (freeze-dried) powder
• Category: Tissue Repair | Gut Integrity | Recovery & Longevity
• Storage: Refrigerate after reconstitution
This peptide requires reconstitution prior to use. Bacteriostatic water is included with your order for convenience.
• Reconstitution Syringe
• Insulin Syringes
• Alcohol Swabs
These essentials can be added below for convenience.
Q: What areas of the body is BPC-157 commonly associated with?
A: It is often discussed in relation to tendons, ligaments, and digestive system support.
Q: How does BPC-157 differ from TB-500?
A: BPC-157 is typically associated with more localised support, while TB-500 is known for broader systemic distribution.
Q: Can BPC-157 be combined with other peptides?
A: It is often explored alongside other recovery-focused peptides as part of a broader approach.
This product is intended for research and educational purposes only.
Always consult a qualified healthcare professional before beginning any new peptide protocol.