89 Results for "

complex III

" in MedChemExpress (MCE) Product Catalog:
Products (89)

89 Results for "complex III" in MCE Product Catalog:

Cat. No.: HY-P82613A
Synonyms: QPC; QCR7; QP-C; UQBC; UQBP; UQPC; UQCR6; MC3DN3

Host:  

Rabbit

Application:  

WB, IHC-P, IP

Reactivity:  

Human, Rat

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Cat. No.: HY-W034053
CAS No.: 808142-88-3
Ir[p-F (Me) ppy]2 (dtbbpy) PF6 is a cyclometalated iridium (III) complex. Ir[p-F (Me) ppy]2 (dtbbpy) PF6 absorbs visible light (460 nm) to form a long-lived charge-separated excited state. Ir[p-F (Me) ppy]2 (dtbbpy) PF6 is applicable to visible light-mediated photocatalytic organic transformation reactions .
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Cat. No.: HY-129795
CAS No.: 119433-80-6
Research Areas:  

Cancer

Thiazolylalanine is a synthetic non-protein amino acid containing a thiazole heterocycle. Thiazolylalanine exhibits dual activities of stimulating protein synthesis and inducing protein degradation in rat reticulocytes, but exerts no effects on protein metabolism or the thermolability of phosphoenolpyruvate carboxykinase in hepatoma cells. Thiazolylalanine can serve as the N-terminal component of tripeptide ligands for the synthesis of various organometallic complexes such as gold, mercury, CyRu (II) Cl2, and Cp*Rh (III) Cl2. Thiazolylalanine finds wide application in the research of breast cancer and other related diseases .
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Cat. No.: HY-131453
CAS No.: 1352002-58-4
Mitochondrial respiration-IN-1 is a mitochondrial respiratory inhibitor. Mitochondrial respiration-IN-1 reduces platelet aggregation, adhesion, and platelet-induced coagulation responses. Mitochondrial respiration-IN-1 induces adaptive glycolysis, decreases mitochondrial membrane potential, selectively reduces ATP production derived from oxidative phosphorylation, and exerts bidirectional regulatory effects on cell proliferation. Mitochondrial respiration-IN-1 activates UPRmt and upregulates the expression of SDHA-1 and MT-CO1. Mitochondrial respiration-IN-1 restores metabolic homeostasis in type 2 diabetic mice. Mitochondrial respiration-IN-1 can be used to investigate diseases mediated by inappropriate platelet activation/aggregation and type 2 diabetes .
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Cat. No.: HY-E70989
Research Areas:  

Metabolic Disease

D-Fructose Dehydrogenase, Gluconobacter industrius (EC 1.1.99.11) is a heterotrimeric membrane-bound enzyme commonly seen in various Gluconobacter sp. especially in Gluconobacter japonicus (Gluconobacter industrius) .D-Fructose Dehydrogenase consists of subunits I (67kDa), II (51 kDa), and III (20 kDa) and catalyzes the oxidation of D-fructose to produce 5-keto-D-fructose. D-Fructose Dehydrogenase is a flavoprotein-cytochrome c complex with subunits I and II covalently bound to flavin adenine dinucleotide (FAD) and heme C as prosthetic groups, respectively.
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Cat. No.: HY-E70989A
Research Areas:  

Metabolic Disease

D-Fructose Dehydrogenase, Gluconobacter industrius (EC 1.1.99.11) is a heterotrimeric membrane-bound enzyme commonly seen in various Gluconobacter sp. especially in Gluconobacter japonicus (Gluconobacter industrius) .D-Fructose Dehydrogenase consists of subunits I (67kDa), II (51 kDa), and III (20 kDa) and catalyzes the oxidation of D-fructose to produce 5-keto-D-fructose. D-Fructose Dehydrogenase is a flavoprotein-cytochrome c complex with subunits I and II covalently bound to flavin adenine dinucleotide (FAD) and heme C as prosthetic groups, respectively.
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Cat. No.: HY-124940
CAS No.: 446877-42-5
Research Areas:  

Cardiovascular Disease

CPU-228 is a complex class III antiarrhythmic agent. CPU-228 concentration-dependently blocks the activities of the rapid component 50 of the delayed rectifier potassium channel (IKr) and the L-type calcium channel (ICa,L), with an IC50 value of 0.909 μM for ICa,L current. CPU-228 produces negative inotropic effects and induces mild, non-frequency-dependent prolongation of the effective refractory period (ERP) in isolated left atria. CPU-228 reduces the incidence of torsades de pointes (TDP) in anesthetized rabbits and inhibits ischemia/reperfusion-induced arrhythmias in rats. CPU-228 can be used in studies related to torsades de pointes .
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Cat. No.: HY-P992155
Synonyms: Arevirumab-3

Target:  

Arenavirus

Research Areas:  

Infection

Arevirumab (Arevirumab-3) is a pan-lineage neutralizing human monoclonal antibody cocktail (8.9F, 12.1F, 37.D). Arevirumab protects cynomolgus monkeys from severe Lassa fever caused by lineage II and III LASV isolates. Arevirumab is applicable to research related to Lassa fever .
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Cat. No.: HY-L944
11028 compounds

MCE 18 stands for Medicinal Chemistry Evolution 2018. This metric was established based on structural data of 28,161 patented lead molecules, 1,370 marketed innovative drugs, and nearly 30,000 investigational candidates from preclinical to Phase III stages across 23 major global pharmaceutical companies from 1950 to 2018. After scaffold clustering analysis, a scoring model was constructed by integrating five three dimensional scaffold characteristics, including aromatic rings (AR), non aromatic heterocycles (NAR), chiral centers (CHIRAL), spirocycles (SPIRO), and the sp³ carbon ratio in cyclic and acyclic moieties, enabling quantitative assessment of molecular scaffold novelty and three dimensional complexity.

According to the score distribution of patented molecules, the top 25% of the original patent dataset was defined as the high novelty region. MCE 18 high scoring compounds selected based on this criterion can effectively avoid scaffold patent conflicts and intellectual property risks from the source. Molecules in this range typically feature a high sp³ carbon ratio, abundant chiral centers, spirocycles, and fused heterocycles with prominent three dimensional conformations. Their spatial properties allow precise matching to complex non traditional undruggable target pockets such as PPI interfaces and allosteric sites, making them ideal structural types for early stage screening of First in class drugs.

MCE‑18 Novelty Focused drug‑Like library strictly selects molecules from the aforementioned high scoring range, containing more than 10,000 premium drug like molecules with highly diverse scaffolds and rich 3D diversity. It can be used for high throughput screening of well established targets such as kinases, GPCRs, and proteases, and is especially suitable for hit identification in allosteric modulation, protein–protein interactions, and various undruggable orphan targets, fully supporting early stage drug discovery for cutting edge innovat