WHAT IS TB-500?
29AugAugust 29, 2022
WHAT IS TB-500? Understanding the Benefits and Uses of Thymosin Beta 4
TB-500 represents a synthetic peptide variant of the naturally occurring Thymosin Beta 4 (TB4), which research identifies as a significant cellular component in various tissues.
Research indicates that Thymosin Beta 4 appears in nearly all human and animal cells, functioning as a protein that potentially facilitates healing processes through natural mechanisms observed in laboratory settings. TB-500 is naturally produced in higher concentrations in areas of tissue damage.
Laboratory investigations utilizing TB-500 in animal models suggest possible benefits regarding wound healing, muscle repair, and joint and tissue integrity. Research findings have also highlighted TB-500’s potential role in cellular growth within fibroblasts, with data demonstrating notable enhancements in cell proliferation compared to control groups in experimental conditions.
Furthermore, research suggests certain peptides such as BPC-157 may influence the production and regulation of growth factors, which scientific literature identifies as important elements in tissue repair processes.
At Loti Labs, we maintain stringent quality standards for our research compounds. TB-500 is available for research purposes exclusively and not intended for human consumption. The compound is provided in lyophilized powder form and packaged in 5 mg vials for laboratory use.
WHAT IS TB-500? Understanding the Benefits and Uses of Thymosin Beta 4
Research suggests TB500 functions as a peptide involved in complex regulatory and developmental processes in laboratory investigations. Evidence indicates it may serve as a component in tissue regeneration, cell differentiation, and inflammatory responses in research models, particularly within various types of blood cells and promoting blood vessel growth. Additionally, TB-500 has shown benefits for cardiovascular health, supporting cell survival after heart attacks and mitigating inflammation and fibrosis.
Scientific professionals play an essential role in advancing research on compounds like TB-500, ensuring appropriate selection of peptides for specific research objectives.
According to published studies, TB500 demonstrates effectiveness in angiogenesis (development of new blood vessels) and cellular development and differentiation in laboratory settings. Research also indicates it influences migration of newly formed cells, suggesting potential applications for injury recovery investigations in experimental models.
STRUCTURE OF TB500: A SYNTHETIC PEPTIDE

CAS Number: 885340-08-9
Molar Mass: 889.01g/mol
Molecular Formula: C38H68N10 O14
MECHANISM OF ACTION IN WOUND HEALING AND IMMUNE SYSTEM
Laboratory investigations suggest TB500 exerts effects in animal models by binding to actin, a protein involved in muscle tissue structure, and influencing the central nervous system. TB-500 is a synthetic fraction of Thymosin Beta-4, which plays a crucial role in promoting healing and tissue regeneration.
The compound appears to attach to actin, which research indicates may facilitate cell migration and proliferation. Consequently, experimental data show healing and recovery processes occur as new blood vessel formation takes place.
Additionally, research suggests TB500 demonstrates the capacity to travel extensively throughout biological systems due to its unique molecular configuration.
Therefore, research findings indicate systemic effects may influence both local and distant injury sites, including reduced inflammatory responses and enhanced flexibility in experimental models. It remains important for qualified research professionals to evaluate compounds like TB-500, as non-approved substances may present various risks when not handled according to proper laboratory protocols.
TB500 EFFECTS ON TISSUE REPAIR
Research suggests the potential beneficial properties of TB500 have been demonstrated in laboratory animal studies through its anti aging effects, which improve blood vessel growth and decrease inflammation. Additionally, TB-500 has shown benefits for the immune system, enhancing its ability to cope with prion proteins, which is crucial for advancements in treating neurodegenerative diseases like Alzheimer’s.
Enhanced wound healing processes
Accelerated recovery mechanisms
Research-indicated muscle development and flexibility improvement while preserving muscle tissue integrity
Cellular repair and regenerative capabilities
Protective mechanisms against tissue trauma
Diminished inflammatory responses
Supporting recovery from muscular injuries, particularly in research models involving high-impact physical stress and aging animal models experiencing trauma related to bone density reduction
TB500 RESEARCH OBSERVATIONS
Laboratory findings indicate that TB500 utilized in animal research exhibited minimal notable research observations. It’s important to clarify that TB-500 represents a synthetic version of Thymosin Beta-4, an engineered peptide compound that mimics naturally occurring protein structures.
Most observations documented in research settings are consistent with those noted with other peptide compounds which include:
Temporary equilibrium disruption
Digestive discomfort
Pronounced energy depletion
REGULATORY STATUS AND DETECTION
Regulatory Status
TB-500, also known as Thymosin Beta-4, is a synthetic peptide compound that has attracted scientific interest for its potential role in tissue repair mechanisms and wound healing processes in research settings. It is crucial to note that TB-500 has not received approval for human application by the FDA or other regulatory authorities. The World Anti-Doping Agency (WADA) has classified TB-500 as a prohibited substance due to its theoretical performance-enhancing properties, making it unsuitable for use by competitive athletes. In veterinary research, TB-500 is utilized to investigate wound healing and tissue repair in animal models, demonstrating its applications within controlled laboratory environments.
Detection Limits
The identification of TB-500 and its metabolites has been explored in various scientific investigations, with researchers working to establish reliable detection parameters. According to findings published in the Journal of Pharmaceutical and Biomedical Analysis, the detection threshold for TB-500 in urine samples is approximately 0.1 ng/mL. A separate investigation published in the Journal of Chromatography B determined that the detection limit for TB-500 in rodent urine specimens is 0.05 ng/mL. These research outcomes highlight the sensitivity of current analytical methods, ensuring that even minimal concentrations of TB-500 can be identified in biological samples.
Product Information
TB-500 is a synthetic peptide derived from the naturally occurring peptide Thymosin Beta-4, which research suggests may play a role in cellular growth stimulation and tissue regeneration in laboratory settings. Studies indicate it also demonstrates anti-inflammatory properties and can promote hair growth, making it a versatile compound for scientific investigation purposes. At LotiLabs, TB-500 is available in multiple formulations, including powder and liquid preparations, designed to accommodate various research protocols.
When acquiring TB-500 from LotiLabs for research purposes, it is essential to adhere to recommended laboratory guidelines for handling and administration. Typically, research protocols utilize TB-500 in quantities ranging from 2-5 mg per kilogram in animal models, administered through various research-appropriate methods. Consulting with qualified research personnel before implementing TB-500 in studies is essential, particularly when investigating interactions with other compounds or in specialized research models.
LotiLabs maintains rigorous quality standards for all TB-500 research compounds, with production occurring in a cGMP-compliant facility. Each research compound undergoes comprehensive analytical testing for purity and potency, ensuring they are free from contaminants that could compromise research outcomes. LotiLabs also emphasizes comprehensive customer support for researchers, offering satisfaction guarantees for their research compounds.
In conclusion, TB-500 represents a synthetic peptide compound with research applications in cellular growth and tissue regeneration studies. When sourcing from LotiLabs, researchers should follow established protocols and consult with qualified scientific personnel to ensure proper research implementation and meaningful experimental results.
ADMINISTRATION AND DOSAGE
TB-500 is typically administered via intramuscular injection, with a recommended dosage of 2-5 mg per injection, administered 2-3 times a week. The specific dosage may vary depending on the research model and the objectives of the study. It is crucial to adhere to the recommended dosage and administration guidelines to ensure the compound’s efficacy and safety in experimental settings.
For optimal results, researchers should consider administering TB-500 in conjunction with a controlled environment that includes a balanced diet and regular physical activity for the animal models. This holistic approach can help maximize the potential benefits observed in the study. Additionally, consulting with a healthcare professional or a research advisor before starting TB-500 administration is essential, especially when dealing with complex research models or when combining TB-500 with other compounds.
CUSTOMER REVIEW AND FEEDBACK
TB-500 has garnered positive feedback from researchers and scientists who have utilized the compound in various experimental settings. Many have reported significant improvements in wound healing, tissue repair, and hair growth in their animal models. These observations suggest that TB-500 may play a crucial role in promoting cellular regeneration and overall immune function.
One researcher noted, “After incorporating TB-500 into our study, we observed a marked improvement in the wound healing process of our subjects. The compound seemed to accelerate tissue repair and reduce recovery time significantly.” Another scientist shared, “Our experiments with TB-500 showed promising results in promoting hair growth and enhancing the overall vitality of our animal models.”
While individual results may vary, the majority of feedback highlights TB-500’s effectiveness in supporting wound healing, tissue repair, and immune function, making it a valuable addition to scientific research.
SAFETY AND PRECAUTIONS
TB-500 is generally considered safe for use in research settings, with minimal side effects reported in animal studies. However, it is essential to follow the recommended dosage and administration guidelines to minimize the risk of adverse reactions.
Common side effects observed in research models may include:
Mild pain or redness at the injection site
Temporary fatigue or lethargy
Headaches or dizziness
In rare cases, more severe side effects may occur, such as:
Allergic reactions
Increased heart rate or blood pressure
Nausea or vomiting
If any severe side effects are observed, it is crucial to consult with a healthcare professional or research advisor immediately.
To ensure safe use, researchers should:
Follow the recommended dosage and administration guidelines
Consult with a healthcare professional or research advisor before starting TB-500 administration
Monitor the subjects’ response to TB-500 and adjust the dosage or administration schedule as needed
Store TB-500 in a cool, dry place, away from direct sunlight and moisture
By adhering to these guidelines and taking the necessary precautions, researchers can minimize the risk of adverse reactions and ensure the safe and effective use of TB-500 in their studies.
LOOKING FOR WHERE TO BUY TB500 ONLINE
When searching for research peptides online, it is paramount to buy from a trusted laboratory to ensure the integrity of your research.
Loti Labs offers affordable prices that come with quality control reports. We have in-depth customer support and a generous return policy when you buy TB500 for sale.
today to buy TB500 online.
References:
Huff T, Muller CS, Otto AM, Netzker R, Hannappel E. beta-Thymosins, small acidic peptides with multiple functions. The international journal of biochemistry & cell biology. 2001;33(3):205-220.
Allan L Goldstein, Ewald Hannappel, Gabriel Sosne & Hynda K Kleinman (2012) Thymosin β4: a multi-functional regenerative peptide. Basic properties and clinical applications, Expert Opinion on Biological Therapy, 12:1, 37-51, DOI: 10.1517/14712598.2012.634793
Zhu, T., Park, H.C., Son, K.M., Kwon, J.H., Park, J., & Yang, H. (2014). Effects of thymosin β4 on wound healing of rat palatal mucosa. International Journal of Molecular Medicine, 34, 816-821. https://doi.org/10.3892/ijmm.2014.1832
Malinda KM, Sidhu GS, Mani H, et al. Thymosin beta4 accelerates wound healing. J Invest Dermatol. 1999;113(3):364–368. doi:10.1046/j.1523-1747.1999.00708.x
Crockford D, Turjman N, Allan C, Angel J. Thymosin beta4: structure, function, and biological properties supporting current and future clinical applications. Ann N Y Acad Sci. 2010;1194:179–189. doi:10.1111/j.1749-6632.2010.05492.x