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Thymosin beta-4 Information;

Name: Thymosin beta-4; Thymosin ??4; TB4; TB500
CAS No.: 77591-33-4
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
Molecular Formula: C212H350N56O78S
Molecular Weight: 4963.44
Appearance: White Lyophilized powder

 

Thymosin Beta-4 (TB-4) Peptide: Research-Grade Regenerative Peptide

Introduction

Thymosin Beta-4 (TB-4) is a biologically active, research-grade peptide commonly used in laboratory studies on tissue repair, wound healing, and cellular regeneration. Its high stability, reproducibility, and purity make it a crucial tool for preclinical research in regenerative medicine, angiogenesis, and cytoskeletal remodeling.


What Is Thymosin Beta-4 Peptide?

Thymosin Beta-4 is a naturally occurring peptide involved in cell migration, tissue repair, and cytoskeletal organization. In research settings, TB-4 peptide is primarily used to study:

  • Tissue regeneration and wound healing
  • Angiogenesis and vascular development
  • Cytoskeletal remodeling and cell migration
  • Cell signaling pathways in regenerative biology

Its precise biological activity allows scientists to model tissue repair and regeneration processes accurately in both in vitro and in vivo experiments.


Chemical and Physical Properties

Property Description
Peptide Name Thymosin Beta-4 (TB-4)
Amino Acid Length 43 amino acids
Purity ≥98% (HPLC verified)
Form Lyophilized powder
Molecular Weight 4963 g/mol
Storage Temperature –20°C (long-term stability)

High-purity TB-4 ensures consistent and reproducible results in regenerative medicine and cellular biology research.


Research Applications

Thymosin Beta-4 peptide is intended exclusively for laboratory research. Key applications include:

  • Regenerative Medicine Studies: Enhances tissue repair and cellular regeneration
  • Wound Healing Research: Investigates effects on epithelial and endothelial repair
  • Angiogenesis and Vascular Studies: Supports new blood vessel formation
  • Cytoskeletal Remodeling Research: Examines cell migration, adhesion, and motility mechanisms

Using TB-4 in controlled experiments provides valuable insights into regenerative pathways and tissue engineering strategies.


Benefits of Thymosin Beta-4 for Research

  • Supports tissue repair and regeneration in regenerative medicine studies
  • Promotes angiogenesis and cellular migration
  • High purity and stability ensure reliable experimental outcomes
  • Provides reproducible results in preclinical and cellular biology studies
  • Scientifically validated for wound healing and regenerative research

Storage and Handling

  • Store lyophilized TB-4 at –20°C, protected from light and moisture
  • Reconstitute with sterile water or appropriate buffer before use
  • After reconstitution, store at 2–8°C and use within the recommended timeframe
  • Avoid repeated freeze–thaw cycles to preserve peptide bioactivity

Important Disclaimer

Thymosin Beta-4 peptide is for laboratory research use only.
It is not approved for human or veterinary use and should only be handled in controlled laboratory environments by trained personnel.


Thymosin Beta-4 Peptide FAQ

Q1: What is TB-4 peptide used for in research?
TB-4 is primarily used to study tissue repair, wound healing, angiogenesis, and cellular regeneration.

Q2: What is the purity of Thymosin Beta-4 peptide?
High-quality TB-4 is typically ≥98% pure, verified by HPLC analysis.

Q3: Can TB-4 peptide be used in humans?
No, it is strictly for research purposes only.

Q4: How should TB-4 peptide be stored?
Store lyophilized at –20°C. After reconstitution, refrigerate at 2–8°C and avoid repeated freeze–thaw cycles.

Q5: Why is TB-4 important for research?
Its ability to promote tissue repair, angiogenesis, and cell migration makes it essential for studies in regenerative medicine, wound healing, and tissue engineering.


Summary

Thymosin Beta-4 (TB-4) peptide is a research-grade regenerative peptide widely used in laboratory studies of tissue repair, wound healing, angiogenesis, and cellular regeneration. Its high purity, stability, and reproducible activity make it an indispensable tool for regenerative medicine, preclinical research, and cellular biology investigations.