Date published: 2025-12-18

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HM74 Activators

Santa Cruz Biotechnology now offers a broad range of HM74 Activators for use in various applications. HM74 Activators are essential tools for studying the function and regulation of the HM74 receptor, also known as the nicotinic acid receptor or GPR109A. This receptor plays a significant role in lipid metabolism, energy homeostasis, and the regulation of inflammatory responses. By specifically activating HM74, researchers can investigate the pathways and mechanisms through which this receptor influences cellular functions and metabolic processes. In scientific research, HM74 Activators are used to explore the downstream effects of HM74 activation on various cellular responses, including lipid mobilization, adipocyte differentiation, and anti-inflammatory signaling. These activators help explain the role of HM74 in modulating metabolic pathways and provide insights into how this receptor influences physiological and pathological processes. Researchers employ HM74 Activators to study the molecular mechanisms by which HM74 mediates its effects and to identify potential targets for modulating HM74 activity in research settings. Additionally, these activators are valuable in high-throughput screening assays aimed at identifying new modulators of HM74 activity, aiding in the discovery of novel regulatory pathways and potential research targets. The use of HM74 Activators supports the development of experimental models to dissect the complex interactions between HM74 and other signaling molecules, enhancing our understanding of cellular regulation and adaptation. By enabling precise control over HM74 activity, these activators facilitate detailed studies of the receptor's role in cellular physiology. View detailed information on our available HM74 Activators by clicking on the product name.
Product NameCAS #Catalog #QUANTITYPriceCitationsRATING

IBC 293

306935-41-1sc-203079
25 mg
$200.00
(0)

IBC 293 functions as an acid halide, exhibiting distinctive reactivity through its electrophilic carbonyl group, which readily engages in nucleophilic acyl substitution reactions. Its unique steric configuration facilitates selective interactions with various nucleophiles, leading to diverse reaction pathways. Additionally, IBC 293 demonstrates notable stability under specific conditions, allowing for controlled reactivity that can be finely tuned by altering solvent environments or temperature, enhancing its utility in synthetic applications.