104 Results for "

uncoupled

" in MedChemExpress (MCE) Product Catalog:
Products (104)

104 Results for "uncoupled" in MCE Product Catalog:

Cat. No.: HY-L046
2,468 compounds

Cardiovascular diseases (CVDs) are a group of disorders of the heart and blood vessels which include coronary heart disease, cerebrovascular disease, peripheral arterial disease, rheumatic heart disease, etc. CVDs are the number 1 cause of death globally. Smoking, unhealthy nutrition, aging population, lack of physical activity, arterial hypertension, or diabetes can promote cardiovascular disease like myocardial infarction or stroke. It is multifactorial and encompasses a multitude of mechanisms, such as eNOS uncoupling, reactive oxygen species formation, chronic inflammatory disorders and abnormal calcium homeostasis. Antioxidant, anti-inflammatory and anti-diabetes agents may reduce the cardiovascular disease risk.

MCE supplies a unique collection of 2,468 compounds with confirmed anti-cardiovascular activity. These compounds mainly target metabolic enzyme, membrane transporter, ion channel, inflammation related signaling pathways. MCE Anti-Cardiovascular Disease Compound Library can be used for cardiovascular diseases related research and high throughput and high content screening for new drugs.

Cat. No.: HY-L089
1,182 compounds

Mitochondria plays an important role in many vital processes in cells, including energy production, fatty-acid oxidation and the Tricarboxylic Acid (TCA) cycle, calcium signaling, permeability transition, apoptosis and heat production. At present, it is recognized that many diseases are associated with impaired mitochondrial function, such as increased accumulation of ROS and decreased OXPHOS and ATP production. Mitochondria are recognized as one of the most important targets for new drug design in cancer, cardiovascular, and neurological diseases, etc. Some small molecule drugs or biologics can act on mitochondria through various pathways, including ETC inhibition, OXPHOS uncoupling, mitochondrial Ca2+ modulation, and control of oxidative stress via decrease or increase of mitochondrial ROS accumulation.

MCE supplies a unique collection of 1,182 mitochondria-targeted compound that mainly targeting Mitochondrial Metabolism, ATP Synthase, Mitophagy, Reactive Oxygen Species, etc. MCE Mitochondria-Targeted Compound Library is a useful tool for mitochondria-targeted drug discovery and related research.

Cat. No.: HY-118075
CAS No.: 606-06-4
Coenzyme Q2 is a benzoquinone electron carrier in the mitochondrial electron transport chain and a p53-dependent apoptosis inducer. Coenzyme Q2 induces p53 phosphorylation at Ser15, promoting p53 accumulation and functional activation. Coenzyme Q2 induces ROS generation, caspase-3 activation, DNA fragmentation, phosphatidylserine externalization, mitochondrial permeability transition pore opening, and oxidative phosphorylation uncoupling. Coenzyme Q2 inhibits Complex I, Complex III, and Complex IV activities, disrupting electron transport and membrane potential generation. Coenzyme Q2 induces excessive mitochondrial proton leak in forebrain mitochondria. Coenzyme Q2 causes loss of righting reflex in mice, accompanied by slow-wave delta EEG activity and reversible loss of wakefulness. Coenzyme Q2 inhibits lipid peroxidation and scavenges superoxide radicals. Coenzyme Q2 is used in research on leukemia, myocardial ischemia-reperfusion injury, and mitochondrial encephalomyopathy .
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Cat. No.: HY-171722
CAS No.: 1355681-08-1
Synonyms: Asc-C9
Target:  

Insecticide PGC-1α

Research Areas:  

Infection Cancer

Ascr#10 (Asc-C9) is an orally active thermogenesis inducer and insecticide that can be obtained from Monochamus alternatus. Ascr#10 binds to the insect adipokinetic hormone (AKH) receptor (Ka=272 µM) and stimulates mitochondrial biogenesis via the PGC1α-UCP4 axis. Consequently, Ascr#10 induces UCP4-mediated uncoupled respiration, reduces the ATP/ADP ratio and accelerates lipid mobilization, thereby driving the thermogenesis process. Ascr#10 delays pupation and exerts specific chemotaxis toward dispersive fourth-stage pinewood nematode LIV larvae. Ascr#10 promotes cold acclimation of Monochamus alternatus larvae through metabolic inhibition and cryoprotectant accumulation, enhancing their survival rate under cold stress. Ascr#10 also induces browning of white adipose tissue and activates brown adipose tissue in mice, thereby helping the body resist cold and tumor growth. Ascr#10 can be widely applied to research related to pine wilt disease, lung tumors and cold stress .
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