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TB-500 20mg
TB-500 (Thymosin Beta-4 Fragment) – Research Peptide for Tissue Repair & Regeneration Studies
Discover TB-500, a synthetic heptapeptide (7 amino acids) that corresponds to the active actin-binding domain (Ac-LKKTETQ) of the naturally occurring protein Thymosin Beta-4 (Tβ4). Thymosin Beta-4 is a highly conserved 43-amino-acid peptide present in virtually all human and animal cells, where it plays a fundamental role in regulating actin dynamics, cell migration, and tissue remodeling.
This stable research peptide is widely studied in preclinical models for its potential to promote wound healing, accelerate recovery from soft-tissue injuries, and support regenerative processes through enhanced cellular motility and angiogenesis.
Key Research Areas for TB-500
• Tissue Repair and Regeneration: TB-500 is primarily investigated for its ability to promote healing in tendons, ligaments, muscles, and skin. It supports cell migration to injury sites, facilitates cytoskeletal reorganization, and aids in the remodeling of damaged tissue in animal models of muscle tears, tendon injuries, and wounds.
• Angiogenesis and Blood Vessel Formation: Research indicates it stimulates the growth of new blood vessels, improving nutrient and oxygen delivery to healing areas via pathways linked to actin sequestration and endothelial cell activity.
• Anti-Inflammatory and Anti-Fibrotic Effects: It has been studied for its capacity to modulate inflammation, reduce excessive scar tissue formation, and protect tissues under stress.
• Muscle Recovery and Flexibility: Often explored in models of athletic or trauma-related injuries for its potential to enhance muscle repair, improve flexibility, and support overall musculoskeletal recovery.
• Other Areas: Preclinical studies also examine its effects on cardiac tissue protection, ocular wound healing, and broader regenerative mechanisms involving actin polymerization regulation.
TB-500 is typically offered as a lyophilized powder in vials (e.g., 5mg or 10mg) for laboratory research use. It is stable and commonly reconstituted for in vitro or in vivo experimental applications.
Important Note: TB-500 is sold strictly for research and analytical purposes only. It is not approved by the FDA or any other regulatory agency for human or veterinary use, consumption, or therapeutic application. Human clinical data remain limited, and safety/efficacy in people has not been established. Always ensure compliance with local laws and regulations when purchasing or handling research peptides.
This product is ideal for laboratories investigating regenerative medicine, wound healing, musculoskeletal recovery, cell migration, or actin-related biological processes. High-purity formulations (often ≥98–99%) ensure reliable results in controlled experiments.
Suggested Product Specs (for your website):
• Sequence: Ac-LKKTETQ (N-acetylated heptapeptide fragment of Thymosin Beta-4)
• Molecular Weight: ~889 Da
• Form: Lyophilized powder (research grade)
• Purity: 98%+ (HPLC verified)
For research use only. Not for human consumption.
TB-500 (Thymosin Beta-4 Fragment) – Research Peptide for Tissue Repair & Regeneration Studies
Discover TB-500, a synthetic heptapeptide (7 amino acids) that corresponds to the active actin-binding domain (Ac-LKKTETQ) of the naturally occurring protein Thymosin Beta-4 (Tβ4). Thymosin Beta-4 is a highly conserved 43-amino-acid peptide present in virtually all human and animal cells, where it plays a fundamental role in regulating actin dynamics, cell migration, and tissue remodeling.
This stable research peptide is widely studied in preclinical models for its potential to promote wound healing, accelerate recovery from soft-tissue injuries, and support regenerative processes through enhanced cellular motility and angiogenesis.
Key Research Areas for TB-500
• Tissue Repair and Regeneration: TB-500 is primarily investigated for its ability to promote healing in tendons, ligaments, muscles, and skin. It supports cell migration to injury sites, facilitates cytoskeletal reorganization, and aids in the remodeling of damaged tissue in animal models of muscle tears, tendon injuries, and wounds.
• Angiogenesis and Blood Vessel Formation: Research indicates it stimulates the growth of new blood vessels, improving nutrient and oxygen delivery to healing areas via pathways linked to actin sequestration and endothelial cell activity.
• Anti-Inflammatory and Anti-Fibrotic Effects: It has been studied for its capacity to modulate inflammation, reduce excessive scar tissue formation, and protect tissues under stress.
• Muscle Recovery and Flexibility: Often explored in models of athletic or trauma-related injuries for its potential to enhance muscle repair, improve flexibility, and support overall musculoskeletal recovery.
• Other Areas: Preclinical studies also examine its effects on cardiac tissue protection, ocular wound healing, and broader regenerative mechanisms involving actin polymerization regulation.
TB-500 is typically offered as a lyophilized powder in vials (e.g., 5mg or 10mg) for laboratory research use. It is stable and commonly reconstituted for in vitro or in vivo experimental applications.
Important Note: TB-500 is sold strictly for research and analytical purposes only. It is not approved by the FDA or any other regulatory agency for human or veterinary use, consumption, or therapeutic application. Human clinical data remain limited, and safety/efficacy in people has not been established. Always ensure compliance with local laws and regulations when purchasing or handling research peptides.
This product is ideal for laboratories investigating regenerative medicine, wound healing, musculoskeletal recovery, cell migration, or actin-related biological processes. High-purity formulations (often ≥98–99%) ensure reliable results in controlled experiments.
Suggested Product Specs (for your website):
• Sequence: Ac-LKKTETQ (N-acetylated heptapeptide fragment of Thymosin Beta-4)
• Molecular Weight: ~889 Da
• Form: Lyophilized powder (research grade)
• Purity: 98%+ (HPLC verified)
For research use only. Not for human consumption.