Date published: 2026-5-9

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CCDC109 Inhibitors

Santa Cruz Biotechnology now offers a broad range of CCDC109 Inhibitors for use in various applications. CCDC109 inhibitors are vital tools in the study of mitochondrial function and calcium signaling, as CCDC109, also known as MICU1, plays a crucial role in regulating the mitochondrial calcium uniporter complex. This complex is responsible for controlling the influx of calcium ions into mitochondria, which is essential for various cellular processes, including energy production, metabolism, and cell survival. By inhibiting CCDC109, researchers can investigate the precise mechanisms by which calcium homeostasis is maintained within mitochondria and how dysregulation of this process can lead to cellular dysfunction or disease. CCDC109 inhibitors are extensively used in studies focused on understanding the role of mitochondrial calcium uptake in both normal physiology and pathological conditions, such as neurodegenerative diseases, cardiovascular disorders, and metabolic syndromes. These inhibitors are also valuable in high-throughput screening assays aimed at identifying novel modulators of mitochondrial function, providing insights into potential targets for diseases associated with mitochondrial dysfunction. The ability to selectively inhibit CCDC109 allows researchers to explore the broader implications of mitochondrial calcium signaling in cellular health and disease, making these inhibitors indispensable for advancing research in cell biology, biochemistry, and related fields. View detailed information on our available CCDC109 Inhibitors by clicking on the product name.
Product NameCAS #Catalog #QUANTITYPriceCitationsRATING

KB-R7943 MESYLATE

182004-65-5sc-202681
10 mg
$160.00
4
(1)

KB-R7943 MESYLATE is characterized by its ability to selectively inhibit Na+/Ca2+ exchange, showcasing unique molecular interactions that influence calcium homeostasis. Its distinct structural features promote specific binding affinities, facilitating targeted modulation of ion transport mechanisms. The compound exhibits notable reaction kinetics, allowing for rapid engagement with cellular components, while its solubility profile enhances its distribution in various environments, impacting its overall reactivity and interaction dynamics.