TB-500 Explained
- Feb 20, 2025
- 2 min read
Updated: Jul 26

TB-500 is one of the most frequently studied peptides in tissue-organisation research, and it is almost always discussed alongside BPC-157. This overview explains what TB-500 is, its relationship to the naturally occurring protein Thymosin Beta-4, the mechanisms it is examined for, and how it is handled in the lab.
What Is TB-500?
TB-500 is a synthetic peptide based on a fragment of Thymosin Beta-4 (TB4), a peptide that occurs naturally throughout the body. Thymosin Beta-4 is one of the most abundant peptides in many tissue types and is a well-characterised subject in cell-biology research. TB-500 is used as a stable, defined synthetic analogue that lets researchers study that activity in a reproducible form.
How Does TB-500 Work?
The mechanism researchers focus on centres on actin, one of the primary structural proteins inside cells. Thymosin Beta-4 binds actin and plays a role in regulating its assembly — and actin dynamics underpin cell migration, the process by which cells move and reorganise. Because of this, TB-500 is studied in the context of:
• Cell migration pathways
• Actin regulation and cytoskeletal organisation
• Angiogenesis-related signalling — new blood-vessel formation.
This is the basis for TB-500's reputation as a systemic counterpart to the more locally-characterised BPC-157.
TB-500 vs BPC-157
The two are studied as a pair because their mechanisms sit at different scales — BPC-157 local, TB-500 systemic. Researchers examining tissue-organisation pathways frequently catalogue them together.
Forms, Purity and Handling
• Format: lyophilised powder.
• Purity: greater than or equal to 99% by HPLC.
• COA: per batch.
• Storage: frozen for long-term stability; refrigerated once in solution.
Frequently Asked Questions
What is TB-500?
A synthetic peptide based on a fragment of Thymosin Beta-4, a naturally occurring peptide involved in cell migration and actin regulation.
Is TB-500 the same as Thymosin Beta-4?
TB-500 is a synthetic analogue based on a fragment of Thymosin Beta-4 — related, but not identical to the full natural protein.
Why are TB-500 and BPC-157 studied together?
Their mechanisms are complementary in scale — TB-500 more systemic, BPC-157 more local.
What purity should TB-500 be?
Greater than or equal to 99% by HPLC with a per-batch COA.
These products are supplied strictly for laboratory and research use only. Not for human or animal consumption.

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