Research use only 99%+ purity guaranteed Third-party COA tested UK tracked delivery
TB-500 10 mg research vial

Actin & cell migration

TB-500

10 mg

Injury modelsCell migrationActin dynamics

A thymosin-beta-4-related synthetic peptide used in controlled laboratory work on actin binding, cytoskeletal organisation, cell migration and repair-associated signalling.

PresentationLyophilised research material
Strength10 mg
Use boundaryResearch only
Material typeThymosin-beta-4-derived peptide
Research focusInjury / cell migration research

£23.00

Third Party COA tested. Please contact us for reports.

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Research-use information only. Not presented for human or veterinary administration.

QUALITY ASSURANCE

Third-party COA testing

Third Party COA tested. Please contact us for reports.

ABOUT THE COMPOUND

Description & research context

TB-500 is commonly used as a laboratory reference name for a synthetic peptide derived from an active region of thymosin beta-4. Research involving thymosin-beta-4-related peptides focuses on their interaction with actin and the resulting effects on cytoskeletal organisation.

In biochemical and cellular models, these peptides are examined for G-actin interaction, actin polymerisation, cell migration and remodelling-associated signalling. Experimental responses vary with cell type, assay conditions, concentration and exposure time.

APPLICATIONS IN RESEARCH

Common experimental themes

  • Actin dynamics and cytoskeletal regulation
  • Cell migration and cellular organisation in vitro
  • Experimental tissue-structure and repair-signalling models
  • Reference work in thymosin-beta-4-related peptide research

LABORATORY HANDLING

Handling & stability

  • Handle lyophilised material under dry conditions.
  • Use an assay-appropriate sterile or buffered aqueous solution for laboratory preparation.
  • Avoid vigorous agitation during dissolution.
  • Aliquot prepared solutions when appropriate for the study design.
  • Minimise repeated freeze-thaw cycles and protect from prolonged light exposure.

RESEARCH NOTES

Interpretation & precautions

  • Buffer composition, pH and ionic strength can influence peptide stability.
  • Experimental outcomes depend on model system and assay conditions.
  • Use appropriate controls and validated analytical methods where required.
  • For laboratory research use only.

REFERENCE READING

Published and technical sources

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