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Six curated peptide protocols designed for specific research outcomes. Each stack pairs compounds with complementary mechanisms of action — priced as a bundle for research efficiency.
Primary tissue repair & gut healing agent
Cell migration, wound healing & anti-inflammation
The gold standard recovery protocol. BPC-157 and TB-500 work through complementary pathways — BPC-157 targets local tissue repair and angiogenesis while TB-500 promotes systemic cell migration and reduces inflammation. Together they form the most researched recovery combination in the peptide space.
Selective lipolysis without IGF-1 stimulation
GHRH analog targeting visceral adipose tissue
A precision fat-loss protocol combining two complementary mechanisms. AOD-9604 directly stimulates lipolysis and inhibits lipogenesis without affecting blood sugar, while Tesamorelin works upstream through the GH axis to reduce visceral fat accumulation.
Synergistic GHRH + GHRP dual-receptor GH secretion
The most studied GH secretagogue combination in research. CJC-1295 and Ipamorelin activate complementary receptors in the pituitary to produce a robust, pulsatile GH release pattern that closely mimics natural physiology. Research applications include lean mass support, recovery, and sleep quality improvement.
Neuropeptide complex for neuroplasticity & BDNF-like activity
Mitochondrial electron carrier for neural energy & neuroprotection
A sophisticated cognitive enhancement protocol combining two distinct mechanisms. Cerebrolysin provides a complex mixture of neuropeptides that cross the blood-brain barrier, supporting neuroplasticity and neuroprotection. Methylene Blue acts as an alternative electron carrier in the mitochondrial transport chain, improving neural energy metabolism.
Telomerase activation & telomere length maintenance
Cellular energy, DNA repair & sirtuin activation
The premier longevity protocol targeting two of the most studied aging mechanisms. Epithalon activates telomerase to maintain telomere length — a key marker of cellular aging — while NAD+ replenishes the coenzyme that declines with age, supporting DNA repair, mitochondrial function, and sirtuin activation.
Triple GIP/GLP-1/glucagon receptor agonism for metabolic optimization
Mitochondria-derived AMPK activator for cellular metabolism
The most advanced metabolic research protocol in our catalog. TrinityGLP's triple receptor agonism works at the hormonal level to optimize metabolic signaling, while MOTS-c operates at the mitochondrial level to activate AMPK and improve cellular energy homeostasis.
All products are intended for research purposes only and are not for human consumption. These statements have not been evaluated by the Food and Drug Administration. These products are not intended to diagnose, treat, cure, or prevent any disease. Protocol notes are provided for informational purposes only and do not constitute medical advice.