21+ Only · Research Use Only — Not For Human Consumption · Educational Content — Not Medical Advice · Not Evaluated by the FDA

The plain-English guide to
peptide research compounds.

What every major research peptide is being studied for — no jargon, no medical degree required. The first few compounds are free. Unlock the full library with your email.

85+ Compounds
8 Research Categories
Plain English
Free with Email
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Recovery & Repair
8 Compounds
BPC-157
Body Protection Compound
Tissue repair, tendon healing, gut integrity
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What it is
A 15-amino acid peptide sequence derived from a protein naturally found in gastric juice. Your stomach produces a version of this — researchers study the synthetic form to understand how it works.
What researchers are studying it for
Tissue repair signaling, tendon and ligament healing models, gut lining integrity, and anti-inflammatory pathways. One of the most extensively studied recovery compounds in current preclinical literature.
What the research shows
Preclinical studies have demonstrated accelerated tendon-to-bone healing, reduced inflammation markers, and gut lining repair in animal models. Human clinical data is still limited — this is research-use only.
Commonly studied with
TB-500 — frequently stacked in research because their proposed mechanisms are complementary. BPC-157 targets local tissue repair; TB-500 addresses systemic cellular migration and recovery.
View Verified Source → Recovery stack guide → Research use only. Not for human consumption.
TB-500
Thymosin Beta-4 Fragment
Cellular migration, systemic tissue recovery
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What it is
A synthetic fragment of Thymosin Beta-4 — a protein your body produces naturally. The TB-500 fragment is the specific sequence researchers focus on for its activity in tissue and cellular repair models.
What researchers are studying it for
Actin regulation, cellular migration, systemic tissue regeneration, and reduction of inflammation. Studied in cardiac, muscular, and wound healing models across multiple preclinical studies.
What the research shows
Animal studies have shown improvements in wound closure, cardiac tissue recovery, and reduced inflammation. Its systemic reach — versus BPC-157's more localized action — is why they're frequently studied together.
Commonly studied with
BPC-157. The combination is one of the most studied recovery pairings — BPC-157 for localized repair signaling, TB-500 for systemic cellular migration and recovery. Often called the "recovery stack."
View Verified Source → Recovery stack guide → Research use only. Not for human consumption.
BPC-157 + TB-500
The Recovery Stack
Most studied recovery combination in current literature
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Why they're studied together
BPC-157 works locally — targeting the specific site of injury or inflammation. TB-500 works systemically — mobilizing cells throughout the body to support repair. Together they address both local and systemic recovery pathways simultaneously.
What the combined research shows
Preclinical studies examining the combination have shown more comprehensive recovery outcomes than either compound alone. The synergy between localized repair signaling and systemic cellular migration is the primary area of research interest.
View Verified Stack → Full recovery guide → Research use only. Not for human consumption.
GHK-Cu
Copper Peptide
Wound healing, collagen synthesis, skin repair
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Pentadeca Arginate
PDA · BPC-157 Variant
Next-generation repair compound
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85+ research compounds
8 research categories
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