TB-500

Mechanism of Interest: TB-500’s primary research focus stems from its ability to upregulate actin-binding proteins, facilitating cell migration, angiogenesis, and tissue remodeling in experimental settings. It has shown promise in modulating inflammatory cytokines, reducing fibrosis, and accelerating wound healing in non-human models

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Description

 Disclaimer: For research use only. Not for human or veterinary use.

 

Peptide sequence: Ac‑Ser‑Asp‑Lys‑Pro‑Asp‑Met‑Ala‑Glu‑Ile‑Glu‑Lys‑Phe‑Asp‑Lys‑Ser‑Lys‑Leu‑Lys‑Lys‑Thr‑Glu‑Thr‑Gln‑Glu‑Lys‑Asn‑Pro‑Leu‑Pro‑Ser‑Lys‑Glu‑Thr‑Ile‑Glu‑Gln‑Glu‑Lys‑Gln‑Ala‑Gly‑Glu‑Ser‑OH (Thymosin β4, 43 aa)Alfa Chemistry

Molecular formula: C₂₁₂H₃₅₀N₅₆O₇₈Spharmaffiliates.com

Molecular weight: ~4963.5 DaDrugBank+15Biomol GmbH – Life Science Shop+15SCBT+15

PubChem CID: 16132341ChemicalBook+15PubChem+15www.rndsystems.com+15

Correct CAS: 77591‑33‑4

  • Pharmacokinetics:

Due to its small molecular structure and high solubility, TB-500 demonstrates rapid systemic diffusion in models, making it a subject of interest for studies requiring broad tissue reach and fast onset of cellular activity.

Researchers also explore TB-500 for:

  • Enhanced muscle and tendon regeneration
  • Potential cardiovascular benefits via endothelial cell differentiation
  • Neuroprotective properties through modulation of glial cells
  • Cytoskeletal support during oxidative or mechanical stress

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