Understanding BAM15: A Key Research Chemical for Metabolic Health
In the pursuit of understanding and improving metabolic health, certain research chemicals play pivotal roles. One such compound is BAM15, a potent mitochondrial uncoupler that has garnered significant attention within the scientific community. As a leading supplier of high-quality research chemicals, NINGBO INNO PHARMCHEM CO.,LTD. is dedicated to providing researchers with the tools they need, including BAM15 (CAS 210302-17-3). This article delves into what BAM15 is, how it works, and its potential applications in advancing our knowledge of metabolism and weight management.
What is BAM15?
BAM15, chemically known as N,N'-bis(2-fluorophenyl)[1,2,5]oxadiazolo[3,4-b]pyrazine-5,6-diamine, is a synthetic organic compound characterized by its high purity, often exceeding 99%. It is recognized for its ability to act as a protonophore uncoupler of mitochondrial oxidative phosphorylation. This means that BAM15 can disrupt the normal process by which mitochondria generate ATP, the primary energy currency of cells. By making mitochondria less efficient at storing energy, BAM15 encourages the body to burn more calories to meet its energy demands.
Mechanism of Action: Uncoupling Mitochondria
The core function of BAM15 lies in its interaction with the inner mitochondrial membrane. It allows protons to leak back into the mitochondrial matrix, bypassing the ATP synthase enzyme. This bypass effectively 'uncouples' the electron transport chain from ATP synthesis. Consequently, the energy that would typically be captured as ATP is released as heat. This increase in thermogenesis leads to a higher overall energy expenditure, which can contribute to fat breakdown and weight loss. For researchers looking to buy BAM15 for studies on energy metabolism, this uncoupling effect is the key area of interest.
Applications in Research and Potential Benefits
The primary application for BAM15 is as a research chemical. Scientists utilize it in vitro and in vivo studies to investigate its effects on various physiological processes. Key research areas include:
- Weight Management: BAM15 is being studied for its potential to promote weight loss by increasing calorie expenditure and reducing fat accumulation. As a reliable BAM15 supplier, we enable researchers exploring anti-obesity treatments.
- Metabolic Health: Beyond weight loss, BAM15 may influence broader metabolic health, including glucose and lipid metabolism. Understanding these mechanisms can shed light on conditions like type 2 diabetes and metabolic syndrome.
- Mitochondrial Function: It serves as a valuable tool for studying mitochondrial bioenergetics, cellular respiration, and the role of mitochondrial uncoupling in various diseases.
- Potential Therapeutic Uses: Preliminary research suggests BAM15 might have roles in protecting against certain types of cellular damage and supporting healthy aging, though these are still subjects of active investigation.
For those seeking to purchase BAM15, sourcing from a reputable manufacturer like NINGBO INNO PHARMCHEM CO.,LTD. ensures you receive a high-quality product. We offer competitive pricing for our BAM15 powder, catering to various research scales. If you are looking to buy BAM15 in China or internationally, our team is ready to provide quotes and support your procurement needs.
In summary, BAM15 represents a significant research chemical for scientists investigating mitochondrial function, energy expenditure, and metabolic regulation. Its unique properties make it a compelling subject for research aimed at improving weight management and overall metabolic health. Partner with NINGBO INNO PHARMCHEM CO.,LTD. to access this vital compound for your groundbreaking research.
Perspectives & Insights
Agile Reader One
“BAM15, chemically known as N,N'-bis(2-fluorophenyl)[1,2,5]oxadiazolo[3,4-b]pyrazine-5,6-diamine, is a synthetic organic compound characterized by its high purity, often exceeding 99%.”
Logic Vision Labs
“It is recognized for its ability to act as a protonophore uncoupler of mitochondrial oxidative phosphorylation.”
Molecule Origin 88
“This means that BAM15 can disrupt the normal process by which mitochondria generate ATP, the primary energy currency of cells.”