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12月 . 25, 2024 23:14 Back to list

cas 1379686-29-9 sr-9011 supplier



Exploring SR-9011 A Comprehensive Overview of CAS 1379686-29-9


As the landscape of research chemicals continues to expand, compound SR-9011 (CAS 1379686-29-9) has garnered significant attention in the scientific community. Its unique properties and potential applications make it a subject of interest for researchers investigating metabolic processes and weight management. Understanding the origins, mechanisms, and implications of SR-9011 is crucial for its application in both research and potential therapeutic uses.


What is SR-9011?


SR-9011 is a selective agonist of the Rev-Erb nuclear receptors, which play crucial roles in regulating circadian rhythms and metabolism. Developed by the pharmaceutical company Sirtris Pharmaceuticals, SR-9011 is often discussed within the context of its ability to enhance metabolic functions, potentially impacting conditions like obesity and diabetes. By modulating the activity of Rev-Erb receptors, SR-9011 influences the expression of genes associated with fatty acid metabolism and circadian rhythms.


Mechanism of Action


The primary mechanism of SR-9011 involves its interaction with the Rev-Erbα and Rev-Erbβ receptors. These receptors are integral to the body's metabolic clock, influencing how the body responds to food intake and energy expenditure. Activation of these receptors by SR-9011 leads to increased fat oxidation and improved lipid levels in the bloodstream, suggesting that it could be a viable candidate for weight management and metabolic health.


Research has indicated that SR-9011 may promote the browning of white adipose tissue, a process crucial for enhancing energy expenditure. Unlike typical weight-loss drugs that primarily focus on suppressing appetite, SR-9011's mode of action revolves around optimizing energy usage and fat metabolism, which could provide a more sustainable approach to weight control.


Current Research and Applications


cas 1379686-29-9 sr-9011 supplier

cas 1379686-29-9 sr-9011 supplier

The potential applications of SR-9011 extend beyond merely treating obesity. Studies have shown promising results in animal models, including enhanced endurance, reduced inflammation, and improved overall metabolism. These findings have sparked interest in the compound’s potential role in treating metabolic disorders, age-related diseases, and even certain types of cancer.


As research progresses, there is a growing emphasis on understanding the long-term effects and safety profiles of SR-9011. Preliminary studies have shown that it may assist in improving metabolic health without significant side effects, making it a candidate for human clinical trials. However, rigorous testing is necessary to ensure its efficacy and safety in humans before it can be approved for widespread use.


Finding a Reliable Supplier


For researchers and institutions interested in exploring SR-9011, sourcing from reliable suppliers is paramount. The compound’s purity, quality, and storage conditions significantly affect research outcomes. It is essential to work with established companies that provide comprehensive documentation regarding the compound, including certificates of analysis and safety data sheets.


When searching for suppliers, look for companies that adhere to strict quality control standards and provide transparent information about their sourcing and manufacturing processes. Engaging with reputable suppliers not only ensures the integrity of your research but also helps in contributing to the broader scientific understanding of SR-9011.


Conclusion


SR-9011 (CAS 1379686-29-9) represents an exciting frontier in metabolic research, with the potential to influence how we approach weight management and metabolic health. As studies continue to unveil its mechanisms and benefits, the demand for high-quality SR-9011 will likely increase. Staying informed about the latest research developments and maintaining access to reliable suppliers will be critical as the scientific community explores this promising compound's potential impact on health.


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