24 Results for "

mitochondrial OXPHOS

" in MedChemExpress (MCE) Product Catalog:
Products (24)

24 Results for "mitochondrial OXPHOS" in MCE Product Catalog:

Cat. No.: HY-112037R
CAS No.: 1570496-34-2
Synonyms: IACS-10759 (Standard)
IACS-010759 (Standard) is the analytical standard of IACS-010759 (HY-112037). This product is intended for research and analytical applications. IACS-010759 is an orally active, potent mitochondrial complex I of oxidative phosphorylation (OXPHOS) inhibitor. IACS-010759 inhibits proliferation and induces apoptosis in models of brain cancer and acute myeloid leukemia (AML) reliant on OXPHOS. IACS-010759 has the potential for relapsed/refractory AML and solid tumors research .
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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-181602
Research Areas:  

Cancer

ATP Synthesis-IN-4 is a mitochondria-targeted small-molecule ligand that inhibits ATP synthesis. ATP Synthesis-IN-4 binds to mtDNA G4s in melanoma cells, thereby inducing changes in mitochondrial metabolism and inhibiting cell proliferation. ATP Synthesis-IN-4 suppresses the translation of key mitochondrial respiratory chain proteins (CYTB, ATP8, COX1, COX3, ND2) in melanoma cells, downregulates the expression of OXPHOS complexes, activates the phosphorylation of AMPK, and induces metabolic reprogramming to upregulate glycolysis. ATP Synthesis-IN-4 is applicable to relevant research on melanoma .
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Cat. No.: HY-187350
LRPPRC-IN-1 is a LRPPRC inhibitor. LRPPRC-IN-1 exerts dual effects of inhibiting LRPPRC activity and inducing its degradation by binding to the RNA-binding domain of LRPPRC. LRPPRC-IN-1 downregulates the expression of mitochondrial OXPHOS complex subunits and ATP synthase, inhibits oxidative phosphorylation, reduces ATP production, suppresses the proliferation and colony formation of various cancer cells, and inhibits tumor growth in vivo. LRPPRC-IN-1 can be used in studies related to lung cancer, pancreatic cancer, breast cancer, esophageal cancer, colorectal cancer, lymphoma, melanoma, cervical cancer, ovarian cancer, and prostate cancer .
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