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Results for "

mitochondrial homeostasis

" in MedChemExpress (MCE) Product Catalog:

11

Inhibitors & Agonists

4

Screening Libraries

1

Peptides

2

Natural
Products

Cat. No. Product Name Target Research Areas Chemical Structure
  • HY-W040307B

    L-Saccharopine hydrochloride

    Endogenous Metabolite Metabolic Disease
    Saccharopine (L-Saccharopine) hydrochloride, a lysine degradation intermediate, is a mitochondrial toxin. Lysine and α-ketoglutarate are converted into Saccharopine hydrochloride by the lysine-ketoglutarate reductase. Saccharopine hydrochloride is then oxidized to α-aminoapidate semialdehyde and glutamate by the saccharopine dehydrogenase. Saccharopine hydrochloride impairs development by disrupting mitochondrial homeostasis .
    Saccharopine hydrochloride
  • HY-W040307

    L-Saccharopine

    Endogenous Metabolite Metabolic Disease
    Saccharopine (L-Saccharopine), a lysine degradation intermediate, is a mitochondrial toxin. Lysine and α-ketoglutarate are converted into Saccharopine by the lysine-ketoglutarate reductase. Saccharopine is then oxidized to α-aminoapidate semialdehyde and glutamate by the saccharopine dehydrogenase. Saccharopine impairs development by disrupting mitochondrial homeostasis .
    Saccharopine
  • HY-121006

    Mitochondrial Metabolism AMPK Metabolic Disease Cancer
    Biguanide is an orally active antihyperglycemic agent. Biguanide inhibits mitochondrial ATP production, activates the LKB1-AMPK signaling pathway, and damages the energy homeostasis. Biguanide exhibits potential in ameliorating the type 2 diabetes and the insulin-associated cancers .
    Biguanide
  • HY-P2048

    Apoptosis Others
    MOTS-c (human) is a biological active peptide. (Recent advances in high-resolution sequencing have led to the discovery of unique peptides derived from mitochondrial genome.1-2 Currently 8 peptides are identified: humanin, mitochondrial open reading frame of the 12S tRNA-c (MOTS-c), and six small humanin-like peptides (SHLP1-6). 1-2 All of these peptides are released into cytosol from mitochondria and associate with increased longevity and cell viability, reduced apoptosis, and other beneficial functions. 1-3 MOTS-c was found to reduce insulin resistance, decrease obesity, and promote homeostasis.)
    MOTS-c (human)
  • HY-144361

    Apoptosis Cancer
    Antitumor agent-44 (Compound 5n) disrupts the mitochondrial homeostasis, induces cell cycle arrest and apoptosis in human adenocarcinoma cells. Antitumor agent-44 (Compound 5n) possesses good anti-tumor activity in a lung-cancer-cell xenograft mice model .
    Antitumor agent-44
  • HY-114383

    Deubiquitinase Autophagy Neurological Disease
    ST-539 is the inhibitor for deubiquitinase USP30 with IC50 of 0.37 μM. ST-539 promotes the ubiquitination of mitochondrial proteins, and induces mitochondrial autophagy, thereby regulating mitochondrial homeostasis. ST-539 can be used in research of neurodegenerative diseases .
    ST-539
  • HY-126718

    Ketohypoglycin

    Mitochondrial Metabolism Metabolic Disease
    Methylenecyclopropylpyruvate (Ketohypoglycin) is an inhibitor for gluconeogenesis. Methylenecyclopropylpyruvate inhibits ketogenesis and affects the fatty acids metabolism. Methylenecyclopropylpyruvate may interfere with the mitochondrial β-oxidation pathway, affects the contents and composition of coenzyme A, and affects the glucose homeostasis .
    Methylenecyclopropylpyruvate
  • HY-173128

    Apoptosis Infection
    TZOA is an antiviral agent that inhibits the replication of infectious hematopoietic necrosis virus (IHNV) in a dose-dependent manner and significantly reduces viral titers. TZOA can effectively counteract IHNV-induced apoptosis, maintain mitochondrial membrane potential and homeostasis, and restore MAVS-mediated interferon expression. TZOA has antiviral activity .
    TZOA
  • HY-139577

    IMB-1018972; IMB-101

    Mitochondrial Metabolism Cardiovascular Disease Metabolic Disease
    Ninerafaxstat (IMB-1018972) is a novel orally active cardiac mitochondrial drug that restores myocardial energy homeostasis. Ninerafaxstat competitively inhibits 3-ketoacyl-CoA thiolase (3-KAT) to partially suppress fatty acid oxidation, and shifts cardiac energy metabolism from free fatty acid oxidation to glucose oxidation, regulating myocardial substrate utilization and thereby improving cardiac efficiency. Ninerafaxstat can be used for research on cardiovascular diseases .
    Ninerafaxstat
  • HY-155784

    Sirtuin Reactive Oxygen Species Keap1-Nrf2 Cancer
    SPC-180002 is a SIRT1/3 dual inhibitor, with IC50 values of 1.13 and 5.41 μM, respectively. SPC-180002 disturbs redox homeostasis via ROS generation, which leads to an increase in both p21 protein stability and mitochondrial dysfunction. SPC-180002 strongly inhibits cell cycle progression and cancer cell growth. SPC-180002 activates the Nrf2 signaling pathway .
    SPC-180002
  • HY-139577A

    MB-1018972 trihydrochloride; IMB-101 trihydrochloride

    Mitochondrial Metabolism Cardiovascular Disease Metabolic Disease
    Ninerafaxstat trihydrochloride (IMB-1018972 trihydrochloride) is the trihydrochloride salt form of Ninerafaxstat (HY-139577). Ninerafaxstat trihydrochloride is a novel orally active cardiac mitochondrial drug that restores myocardial energy homeostasis. Ninerafaxstat trihydrochloride competitively inhibits 3-ketoacyl-CoA thiolase (3-KAT) to partially suppress fatty acid oxidation, and shifts cardiac energy metabolism from free fatty acid oxidation to glucose oxidation, regulating myocardial substrate utilization and thereby improving cardiac efficiency. Ninerafaxstat trihydrochloride can be used for research on cardiovascular diseases .
    Ninerafaxstat trihydrochloride

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