TB-500 Peptide (TB4) 10MG

This batch of TB-500(TB4) has been third party lab tested and verified for quality.

TESTED FOR:

TESTED FOR:

$62.00

Discount Quantity Price
0% 1 - 4 $62.00
10% Off 5 - 9 $55.80
15% Off 10 - 24 $52.70
25% Off 25 + $46.50
This product is in powder form and is not reconstituted. All products and materials sold on this site are not for human consumption and subject to our Terms and Conditions.

Bottle: vial - sealed - flip top
Vial size: 3ml
Form: powder (lyophilized)
Not reconstituted

Test results:
TB-500 Peptide
Date Tested:
September 2, 2025
Purity:
12.84mg
Weight:
11.77mg
Endotoxins(LPS):
Pass
Sterility:
Pass
TFA:
Pass
Batch #:
09-25-0510E
Our peptides are tested by Janoshik analytical testing lab.
Certificates of Analysis

This is the full sequence(43aa) version of TB500(TB4)
For the less common short amino sequence(7aa) version of TB500, please see the other Frag(17-23) TB500 product page.

TB-500 Peptide Information

FORM

Powder (lyophilized)

CAS NUMBER

77591-33-4

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

OTHER NAMES

tb4, tb-4, Thymosin Beta 4, tb500, tb-500, tb500

WEIGHT

10mg

Molecular Weight

4963.4408 g/mol

Terms

Subject to our Terms and Conditions. This material is sold for laboratory research use only. Not for human consumption, animal, or medical use.

Why isn’t there more information on the TB-500 peptide?

Due to the legal landscape of peptides and research products, providing information that may imply anything beyond laboratory research use is a legal liability. We’re an expert biotechnology company that provides high quality peptides and products for purchase to advance scientific research in this field.

Lab technician professionals using Verified Peptides 99% pure peptides in a lab.

Why Choose Verified Peptides?

The industry's most trusted source for research peptides

The #1 Leader In Peptide Testing
300+ Certificates of Analysis

What does this mean for you? You can be sure we don't cut corners on testing every single batch. Visit our Lab Reports page.

A Long Standing Trusted Company

We pioneered third party lab testing. We've been in the peptide business for over 5 years since 2020. 

The Highest Quality at the Best Prices

You won't find this degree of testing and quality at this price.

Peptides Tested For More Than Just Purity

We conduct an array of tests via HPLC and other methods for our peptides:
purity, weight, endotoxins(LPS), sterility (bacteria & yeast), and TFA content.
 

Transparency. Trusted. Reliable.

  • Batch number on every vial
  • Published Certificates of Analysis
  • Expert customer service
  • Satisfaction and quality guarantee
  • Cold pack styrofoam shipping
  • Secure credit card payment

Explore Other High-Purity Peptides

Original price was: $60.00.Current price is: $53.00.
Original price was: $120.00.Current price is: $107.00.
Out of stock
$79.99
$119.00

What is TB-500 (Thymosin Beta-4)?

TB-500, or Thymosin Beta-4 (Tβ4), is a small actin-sequestering peptide that plays a critical role in cellular organization and tissue repair. Unlike traditional growth factors, TB-500 exists within nearly all cells and is rapidly mobilized during tissue injury. At 4.96 kDa, it's significantly smaller than typical growth factors (14-16 kDa), enabling enhanced tissue diffusion and bioavailability. TB-500 exerts broad, multifunctional effects including anti-inflammatory, antimicrobial, angiogenic, and anti-apoptotic actions, making it a prime candidate for regenerative medicine research.

TB-500 Research Studies

Comprehensive animal studies on tissue repair and regeneration

🔬 Multi-Species Research

Animal Studies with TB-500 (TB4) for Tissue Repair and Regeneration

Introduction to Thymosin Beta-4

Thymosin beta-4 (Tβ4), commonly known as TB-500, is a small actin-sequestering molecule that plays a critical role in the cytoskeletal organization of mammalian cells. Unlike growth factors, Tβ4 is not secreted or stored in extracellular matrices but exists within nearly all cells, especially in platelets and white blood cells. This intracellular localization allows rapid mobilization during tissue injury, supporting repair mechanisms from the earliest inflammatory stages. While typical growth factors such as VEGF or EGF measure 14–16 kDa, Tβ4 is much smaller (4.96 kDa), enabling enhanced tissue diffusion and bioavailability. Unlike growth factors that bind to heparin and act on specific receptor types, Tβ4 exerts broad, multifunctional effects including anti-inflammatory, antimicrobial, angiogenic, and anti-apoptotic actions. Its ability to modulate various cellular processes places Tβ4 apart from conventional peptide hormones or cytokines and makes it a prime candidate among synthetic peptides for regenerative properties.

Biological Properties of TB-500 in Tissue Repair

TB-500 studies highlight several biological mechanisms underlying its tissue-healing potential in animals:
  • Anti-inflammatory and antimicrobial effects: Tβ4 downregulates cytokines and chemokines, reducing swelling, tissue necrosis, and oxidative damage while preventing bacterial infection at wound sites.
  • Promotion of angiogenesis and re-epithelialization: It stimulates endothelial and epithelial cell migration, facilitating new vessel formation and surface restoration, particularly evident in dermal and corneal models.
  • Anti-apoptotic and antifibrotic actions: In cardiac and neural injury models, Tβ4 preserves cell viability and reduces fibrotic scarring, maintaining functional tissue architecture.
  • Stem cell activation: It promotes progenitor cell migration and differentiation, contributing to cardiac, dermal, and hair follicle regeneration.
Together, these mechanisms establish Tβ4 as a multifunctional synthetic peptide capable of modulating inflammation, cell survival, and structural remodeling.

Topical Applications in Animal Models

Extensive TB-500 research demonstrates Tβ4's efficacy when administered topically in ocular and dermal injury models. Corneal Wound Healing In mouse and rat models with alkali burns or heptanol-induced epithelial debridement, topical Tβ4 (5 µg/5 µL twice daily) markedly accelerated corneal re-epithelialization. Treatment reduced inflammation by suppressing TNF-α and NF-κB signaling, decreasing matrix metalloproteinase activity, and increasing laminin-5 production for cell adhesion. Notably, corneal angiogenesis was not induced, maintaining ocular transparency. Dermal Wound Repair In full-thickness punch wounds in mice and rats, Tβ4 (5–50 µg per wound) promoted accelerated closure, collagen deposition, and angiogenesis. Healing improvements were observed even in diabetic, aged, or corticosteroid-suppressed animals, validating its regenerative versatility. Both recombinant and synthetic peptide forms yielded comparable efficacy. Hair Growth Stimulation An unanticipated finding across dermal models was enhanced hair regrowth near Tβ4-treated sites. Topical doses (2.5–5 µg/50 µL hydrogel) in mice and rats stimulated thicker, darker hair via activation of bulge-region stem cells and their differentiation—indicative of follicular renewal rather than neogenesis.

Systemic Applications in Animal Models

Systemic TB-500 studies span diverse species and injury models, highlighting multi-organ benefits. Cardioprotection In murine coronary ligation and porcine reperfusion models, systemic or intracardiac administration (400 ng to 15 mg per animal) reduced infarct size, improved myocardial function, and enhanced survival. Mechanistically, Tβ4 activated integrin-linked kinase (ILK) and Akt pathways, promoting cardiac cell migration, stem cell differentiation, and angiogenesis, while mitigating fibrosis. Neurological Protection In rats, intracerebroventricular Tβ4 (4.3 µg twice daily for 5 days) prevented hippocampal neuron loss from excitotoxic damage. In multiple sclerosis models, repeated intraperitoneal administration (6 mg/kg) led to functional recovery, reduced inflammation, and increased mature oligodendrocytes, confirming neuroregenerative capacity. Anti-Sepsis Activity In rat endotoxin shock models, Tβ4 administration (100 µg per animal) reduced mortality by downregulating inflammatory cytokines such as TNF-α and IL-1. Observations of naturally decreased circulating Tβ4 during sepsis suggest a protective host-response role that synthetic supplementation may reinforce.

Safety and Toxicology Studies

Across species—rats, dogs, and monkeys—high-dose evaluations confirmed an excellent safety profile. Intravenous doses up to 60 mg/kg in rats and dogs and 50 mg/kg in monkeys caused no observable toxic effects, while 250 mg/kg in extended trials remained well tolerated. These results strongly indicate broad systemic tolerance, supporting Tβ4's progression toward human trials.

Conclusion

Animal research on thymosin beta-4 (Tβ4, TB-500) demonstrates that this small, actin-binding synthetic peptide exerts a broad spectrum of regenerative effects across multiple organ systems. Its capacity to modulate inflammation, stimulate angiogenesis, inhibit apoptosis, and activate stem cells distinguishes it from conventional single-target growth factors. In ocular and dermal wound models, Tβ4 accelerated epithelial closure, enhanced collagen deposition, and reduced inflammatory infiltration without inducing unwanted neovascularization. In systemic applications, the peptide provided significant cardioprotection by activating integrin-linked kinase and Akt pathways, promoted neuronal survival and functional recovery in neurological injury models, and reduced mortality in septic shock through cytokine suppression. Equally important, toxicology studies in rats, dogs, and monkeys revealed excellent systemic tolerance, even at doses exceeding 60 mg/kg intravenously, with no observed toxic effects. Overall, the collective TB-500 research supports advancing Tβ4 into clinical translation for dermal, cardiac, ocular, and neurological repair. The consistency of its results across species and injury types strongly indicates that Tβ4 represents a next-generation regenerative peptide capable of bridging preclinical efficacy with future human therapies.

Frequently Asked Questions (FAQ)

What is TB-500 (Thymosin Beta-4) and how does it work?
TB-500, or thymosin beta-4, is a naturally occurring actin-binding peptide that regulates cellular migration, differentiation, and repair processes by modulating inflammation, apoptosis, and angiogenesis in animals.
How has TB-500 been tested in animal wound-healing studies?
It has been applied topically and systemically in corneal, dermal, cardiac, and neural injury models, demonstrating accelerated healing, reduced inflammation, and improved functional recovery.
What makes TB-500 different from traditional growth factors?
Unlike growth factors, TB-500 is smaller, non-heparin-binding, and freely diffuses into tissues, acting on multiple cell types to promote regeneration rather than merely cell proliferation.
Has TB-500 been shown to be safe in animal studies?
Yes. Across multi-species toxicology trials, even very high intravenous doses were well tolerated without adverse effects.
What are the potential therapeutic applications of TB-500 research in animals?
TB-500 shows potential for dermal, ocular, cardiac, and neural regeneration, along with anti-inflammatory and antifibrotic therapies.
How do TB-500's multifunctional properties impact tissue regeneration outcomes?
By acting on multiple repair pathways simultaneously—angiogenesis, stem cell activation, and apoptosis inhibition—it creates a coordinated regenerative environment.
What systemic benefits have been observed in cardiac and neurological models?
Systemic Tβ4 reduced infarct size, promoted neural survival, and enhanced recovery from myocardial and neurological injuries.
Why is TB-500 considered a promising synthetic peptide for future therapies?
Because of its broad spectrum efficacy, non-toxicity, and ability to engage multiple biological targets essential for tissue regeneration.
📚 Study References
Philp D, Kleinman HK. Animal studies with thymosin beta, a multifunctional tissue repair and regeneration peptide. Ann N Y Acad Sci. 2010;1194:81-86. doi:10.1111/j.1749-6632.2010.05479.x
https://pubmed.ncbi.nlm.nih.gov/20536453/

Hear What Our Customers Say

Trusted by thousands of researchers for high-quality peptides

This is a first class operation. Quality products and the best customer service. There may be many similar type of companies out there, but this one is trusted and affordable. No price gouging! I highly recommend this company!
C
Patricia
Returning customer

Verified Peptides is hands down my favorite website for these products. I can always count on the products to be legitimate and effective, all while being affordable. Will continue to give them my business.
C
Brandon C.
Returning customer

Outstanding product, outstanding price, outstanding shipping

C
Shawn F.
Returning customer