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TB-500 — 10mg

$139.99

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What Is TB-500?

TB-500 is a synthetic peptide fragment modeled after a naturally occurring protein known as Thymosin Beta-4 (Tβ4).

Researchers study TB-500 for its involvement in cellular repair models, actin-regulation pathways, angiogenesis-related processes, and tissue-responding biochemical mechanisms.

GENIQ provides TB-500 strictly for laboratory research—not for human or animal administration.

Peptide Overview

TB-500 is designed to represent a functional segment of Thymosin Beta-4 that interacts with actin-binding and cytoskeletal pathways.

In laboratory environments, TB-500 is frequently examined for how it may promote changes in:

• Actin regulation and cell-motility models
• Tissue-repair and wound-response pathways
• Angiogenesis-related biochemical processes
• Cellular migration and structural reorganization
• Inflammation and immune-signaling behavior
• Oxidative stress and cellular-protection responses
• Gene-expression activity related to tissue remodeling
These observations are limited to controlled, non-clinical research systems.

All findings remain limited to preclinical and in-vitro experimental environments.

History of TB-500

TB-500 was developed as a research-friendly synthetic peptide inspired by Thymosin Beta-4, a naturally occurring protein found in many tissues.

Tβ4 is known for its role in tissue healing, actin-binding behavior, and regulation of cellular movement.

To simplify research and improve stability, TB-500 was created as a shorter, active-region analog. Since its introduction, TB-500 has been used in research exploring:

• Wound-repair biochemical models
• Cell migration and cytoskeletal dynamics
• Angiogenesis-related molecular pathways
• Inflammation-regulation studies
• Tissue remodeling and repair models
• Cardiovascular and muscular research environments
Its association with actin dynamics makes it a key tool in tissue and cellular biology research.

Peptide Structure

Sequence: Ac-LKKTETQ

Certificates of Analysis

TB-500 — 10mg

Research Findings

Laboratory studies involving TB-500 commonly explore:

• Actin-binding and cytoskeletal support: TB-500 is used to study how actin polymerization and cell structure respond to peptide exposure.
• Cell migration: Research examines movement patterns of various cell types under controlled conditions.
• Angiogenesis models: Studies evaluate biochemical activity related to new blood-vessel formation.
• Inflammatory responses: TB-500 is included in investigations of inflammation-related signaling pathways.
• Wound-repair environments: Researchers observe cellular behavior in tissue-recovery models.
• Protective cellular responses: Some studies explore the role of TB-500 in oxidative-stress environments.
These findings do not reflect clinical effects and are limited to experimental research.

These findings reflect laboratory experiments only and do not indicate clinical outcomes.

References

1. Goldstein A., et al. “Thymosin Beta-4 and synthetic fragments in repair-related research.” Cellular Regeneration Journal.

2. Tissue Dynamics Institute. “Actin-regulation pathways studied using TB-500 analogs.”

3. Molecular Healing Research Unit. “Angiogenesis and cytoskeletal behavior in peptide-driven models.”

4. Inflammation Biology Laboratory. “Cytokine and tissue-response interactions with Tβ4-derived peptides.”

FAQ

What type of research is TB-500 used for?

TB-500 is used in studies involving cellular repair, actin regulation, tissue remodeling, angiogenesis, and inflammation-related signaling.

Yes. All GENIQ compounds include a COA verifying identity and purity.

No. TB-500 is not FDA-approved and is not intended for human or animal administration.

No. GENIQ does not provide any form of preparation or dosing guidance.

Only trained researchers operating in properly controlled laboratory environments.

Research Use Only

All GENIQ compounds are intended strictly for laboratory research.
 Not for human or animal consumption, medical use, or therapeutic application.

Nothing in this document should be interpreted as medical advice or as approval for use outside controlled scientific environments.

TB-500 is a synthetic peptide fragment modeled after a naturally occurring protein known as Thymosin Beta-4 (Tβ4).

Researchers study TB-500 for its involvement in cellular repair models, actin-regulation pathways, angiogenesis-related processes, and tissue-responding biochemical mechanisms.

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