TB-500

Price range: $60.00 through $120.00

Range Discount
2 - 3 3%
4 - 5 7%
6 - 9 10%
10 - 19 20%
20 - 29 25%
30 - 49 30%
50 + 35%
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Typical purity ≥99% unless otherwise stated.

FOR RESEARCH USE ONLY (RUO). NOT FOR DIAGNOSTIC, MEDICAL, HUMAN, OR ANIMAL USE.

Research Overview

TB-500 is a synthetic peptide based on the active region of thymosin beta-4, studied in research models involving tissue remodeling, cell migration, angiogenesis, actin dynamics, and regenerative biology.

Derived from the naturally occurring thymosin beta-4 protein, TB-500 has become an important research peptide for investigating the molecular mechanisms that regulate tissue maintenance, cellular movement, and repair following physiological stress. Its broad biological activity has established it as a valuable research tool across regenerative and musculoskeletal research.

Lyophilized Vial Format

Precision-manufactured and lyophilized for stability, this research-grade peptide is produced to support reproducible laboratory workflows requiring accurate preparation, controlled storage, and consistent experimental performance.

Why Researchers Study TB-500

TB-500 is investigated for its interaction with actin, one of the most abundant structural proteins within eukaryotic cells. Research continues to examine how modulation of actin dynamics influences cell migration, angiogenic signaling, extracellular matrix remodeling, and the molecular pathways that coordinate tissue repair and regeneration.

Its mechanism-driven profile has made TB-500 a valuable research peptide for exploring connective tissue biology, musculoskeletal physiology, vascular biology, and the complex cellular processes involved in tissue remodeling and structural adaptation.

Research Applications

Researchers commonly utilize TB-500 in laboratory investigations involving:

  • Tissue remodeling
  • Cell migration
  • Actin dynamics
  • Angiogenesis
  • Connective tissue biology
  • Musculoskeletal physiology
  • Extracellular matrix remodeling
  • Regenerative biology
  • Cellular repair mechanisms
  • Experimental wound healing models
For laboratory research use only. Not for human consumption or clinical application.
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