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SR 9009 – High Purity Rev-ErbA Research Compound

Original price was: €60.00.Current price is: €50.00.

Advance your laboratory data with SR 9009 (Stenabolic), a highly stable synthetic Rev-ErbA receptor agonist developed for metabolic and circadian rhythm research. Formulated with uncompromised analytical purity, this premium research chemical provides consistent molecular binding properties to accurately map changes in energy expenditure, mitochondrial activity, and lipid metabolism. Designed strictly for laboratory exploration and in vitro testing environments, it offers researchers a reliable, predictable tool for study without background hormonal interference.

Description

SR-9009 (Stenabolic)

SR 9009, also known as Stenabolic, is a synthetic compound developed to study its effects on metabolism, endurance, and circadian rhythm regulation. Classified as a research chemical, it is not approved for medical use in humans but remains an important subject in scientific exploration.

What is SR-9009?

SR 9009 was created by Professor Thomas Burris at The Scripps Research Institute. Unlike steroids or traditional supplements, it works by binding to a protein called Rev-ErbA, which plays a key role in controlling the body’s internal clock, energy expenditure, and fat storage.

Mechanism of Action

Through interaction with Rev-ErbA, SR 9009 influences metabolic pathways. Studies suggest it may enhance mitochondrial activity, regulate glucose levels, and increase endurance in animal models. Because of these findings, it has been widely studied for potential applications in conditions linked to metabolism and energy imbalance.

Potential Benefits Under Research

Although human use is not approved, laboratory research highlights several possibilities:

  • Improved endurance and stamina in animal testing

  • Better regulation of lipid and glucose metabolism

  • Support for circadian rhythm alignment

  • Possible applications in metabolic disorders

These findings remain preliminary and are limited to controlled environments.

Safety and Side Effects

Since SR 9009 is a research chemical, its long-term safety profile in humans is unknown. Reported concerns include potential impacts on liver function and general metabolic balance. Consequently, professional organizations warn against unsupervised use outside laboratory research.

Legal and Ethical Status

SR-9009 is not FDA-approved and is prohibited for athletic use by the World Anti-Doping Agency (WADA). Its availability is restricted to laboratories and research institutions.

Conclusion

SR 9009, or Stenabolic, continues to generate scientific interest due to its potential metabolic effects. While studies indicate possible benefits, it remains a compound intended strictly for research. Anyone exploring this subject should rely on peer-reviewed scientific literature and regulatory guidance.

What is SR 9009? It is a synthetic research chemical that functions as a Rev-ErbA agonist to evaluate metabolic pathways, stamina variations, and internal clock regulation in laboratory environments. Who is it for? It is intended exclusively for scientific researchers and laboratory facilities studying energy imbalance. By enhancing mitochondrial observations, it allows for the precise evaluation of biological processes safely and systematically.

FAQ

Q1: Is SR 9009 classified as a SARM?

A: No. While frequently grouped with them in consumer discussions, it is actually a synthetic Rev-ErbA receptor agonist. It does not bind to androgen receptors and does not cause hormonal suppression in study models.

Q2: What is the primary function of this compound in research?

A: It is primarily used to investigate changes in lipid and glucose metabolism, analyze variations in mitochondrial activity, and study the regulation of circadian rhythms in laboratory settings.

Q3: Is this product approved for human consumption?

A: No. This compound is a research chemical that is not FDA-approved for human or medical use. It is strictly available for laboratory evaluation, academic studies, and institutional research purposes.

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