Peptide Library
Compound-by-compound overviews. Mechanism, evidence level, reported research uses, and safety considerations.
Where to start
Editorial routes into the library. Not personalization — just useful starting points.
Categories
Fat Loss & Metabolism
Compounds studied for body-composition, glycaemic control, and metabolic health.
Categories
Repair & Regeneration
Compounds studied for wound healing, tissue repair, and musculoskeletal recovery.
Categories
Cellular Health
Compounds studied for mitochondrial function, redox balance, and cellular integrity.
Categories
Muscle & Performance
Compounds studied for GH-axis pulsatility, lean-mass support, and performance-adjacent research.
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Editorial paths through the library. Pick one and follow the trail.
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Semaglutide vs Tirzepatide
Two of the most extensively studied incretin-based therapies — approved and marketed in the same therapeutic areas, but with different receptor profiles, different phase-3 programs, and different published outcomes. This page compares what the peer-reviewed literature and regulatory documentation currently support for each.
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Tirzepatide vs Retatrutide
Two incretin-based peptides in the same broad family, but at very different stages of development. This page compares what the peer-reviewed literature currently supports on each — regulatory status, receptor targets, evidence tier, and headline efficacy from published phase-3 trials.
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BPC-157 vs TB-500
These two peptides are the most-discussed pair in the tissue-repair conversation, and they are also the most-conflated. In practice they share none of what usually justifies grouping compounds: their origins are unrelated, their mechanisms are unrelated, and the shape of the evidence supporting each is structurally different. This page walks through those distinctions.
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KPV vs GHK-Cu
Two small, endogenously-derived peptides that get grouped in discussions about anti-inflammatory and skin peptides. They share molecular scale — both are tripeptides — and their mechanisms are both proposed to be intracellular rather than classical receptor-mediated. Everything else about their evidence structures, use cases, and regulatory status differs, in ways that are worth reading precisely.
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Tesamorelin vs Sermorelin
Two GHRH analogues built for the same fundamental job — stimulating the pituitary's own pulsatile release of growth hormone — but at very different points in structure, half-life, and regulatory history. This page compares what the peer-reviewed literature and regulatory documentation currently support for each.
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CJC-1295 (No DAC) vs Sermorelin
Two GHRH(1-29)-based signals. Sermorelin is the native sequence; CJC-1295 No DAC is the same sequence with four amino acid substitutions that resist enzymatic degradation. This page compares what the peer-reviewed literature currently supports on each.
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CJC-1295 No DAC vs CJC-1295 DAC
The two forms share an identical GHRH(1-29) backbone with the same four amino acid substitutions. The Drug Affinity Complex (DAC) — a single maleimidopropionic acid linker that covalently binds serum albumin — is the only chemical difference. Every downstream pharmacologic property flows from that one addition. This page reads out those differences precisely.
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AOD-9604 vs Semaglutide
Two compounds pursued as pharmacological approaches to weight loss, from opposite starting points and with opposite clinical results. AOD-9604 was designed as a lipolytic fragment of human growth hormone; its 2007 phase 2b did not meet its primary endpoint and its pharmaceutical program was discontinued. Semaglutide came from the incretin research tradition, obtained FDA approval for chronic weight management in 2021, and produced a large clinical evidence base. This page presents the two side by side to make each visible in the other's context.
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