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MITO-ID® Membrane potential de

tection kit /ENZ-51018
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  • ¥3093 - 8543
  • Enzo已认证
  • ENZ-51018
  • 美国
  • 2026年03月04日
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    代理商
    16钻石会员
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    • 详细信息
    • 文献和实验
    • 技术资料
    • 库存

      少量现货

    • 英文名

      MITO-ID® Membrane potential detection kit

    • CAS号

      /

    • 保质期

      见包装说明

    • 供应商

      欣博盛生物

    • 保存条件

      -80°C

    • 规格

      25 tests/100 tests

    规格:25 tests产品价格:¥3093.0
    规格:100 tests产品价格:¥8543.0

    MITO-ID® Membrane potential detection kit产品货号ENZ-51018,由ENZO公司研发生产,欣博盛生物是ENZO公司授权一级代理商,如需购买ENZO公司产品,技术问题,请联系欣博盛生物。热销品常备现货~

     

    • Dual-emission dye fluoresces either green or orange depending upon mitochondrial membrane potential status
    • 10X more sensitive than JC-1 with superior aqueous solubility
    • True mix-and-read homogeneous assay for live cells
    • Suitable for chemical/environmental toxicity screening
    • Optimized for fluorescence microscopy, flow cytometry and microplate reader
    • Suitable for high-throughput applications

    Enzo Life Sciences MITO-ID® Membrane Potential Detection Kit is a mitochondria tracker dye including a dual-emission cationic dye. It measures the mitochondrial membrane potential (MMP) in live cells. In energized or active cells, the MITO-ID® Membrane Potential dye rapidly accumulates as orange-fluorescent aggregates in the mitochondria due to their relative negative charge, while it exists as a green-fluorescent monomer in the cytosol. However, in cells with compromised MMP, the MITO-ID® Membrane Potential dye exists primarily as green-fluorescent monomers throughout the cytosol and no longer exhibits orange fluorescence in the mitochondria. A widely used uncoupler of mitochondrial oxidative phosphorylation (CCCP) is provided as a positive control for monitoring loss in mitochondrial membrane potential.

    Cell-based assays for evaluating the functional status of mitochondria are useful tools for elucidating the role of mitochondrial activity in drug-induced toxicity, the apoptosis cascade and other cellular and biochemical processes. The loss of the mitochondrial membrane potential (MMP) is often associated with early stages of apoptosis. The collapse of MMP coincides with the opening of the mitochondrial permeability transition pores, leading to the release of cytochrome C into the cytosol, which in turn triggers other downstream events in the apoptotic cascade.

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    图标文献和实验
    该产品被引用文献
    • Altered inflammatory response in FMRP-deficient microglia: J.M. Parrott, et al.; iScience 24, 103293 (2021), Application(s): Fluorescence Microscopy, Abstract — Full Text
    • ApoE4 impairs neuron-astrocyte coupling of fatty acid metabolism: G. Qi, et al.; Cell. Rep. 34, 108572 (2021), Application(s): Microplate Reader, Abstract — Full Text
    • Copper (II) complexes containing natural flavonoid pomiferin show considerable in vitro cytotoxicity and anti-inflammatory effects: J. Vanco, et al.; Int. J. Mol. Sci. 22, 7626 (2021), Application(s): Flow Cytometry, Abstract — Full Text
    • Selective striatal cell loss is ameliorated by regulated autophagy of the cortex: K. Cho & G.W. Kim; Life Sci. 282, 119822 (2021), Application(s): Flow Cytometry, Abstract
    • Depletion of mitochondrial components from extracellular vesicles secreted from astrocytes in a mouse model of fragile X syndrome: B.G. Ha, et al.; Int. J. Mol. Sci. 22, 410 (2021), Application(s): Fluorescence Microscopy, Abstract — Full Text
    • Inhibiting autophagy targets human leukemic stem cells and hypoxic AML blasts by disrupting mitochondrial homeostasis: K.M. Dykstra, et al.; Blood Adv. 5, 2087 (2021), Abstract
    • Botrytis cinerea methyl isocitrate lyase mediates oxidative stress tolerance and programmed cell death by modulating cellular succinate levels: L. Oren-Young, et al.; Fungal Genet. Biol. 146, 103484 (2021), Application(s): Fluorescence Microscopy; Sample Type(s): Fungus (Conidia (fungus spore)), Abstract
    • Novel Pt(IV) Prodrugs Displaying Antimitochondrial Effects: L. Tabrizi, et al.; Mol. Pharm. 17, 3009 (2020), Application(s): Microplate Reader; Sample Type(s): Human Mammary Cell Line (MCF-7 Carcinoma), Abstract
    • ZnO Nanoparticles Induced Caspase-Dependent Apoptosis in Gingival Squamous Cell Carcinoma through Mitochondrial Dysfunction and p70S6K Signaling Pathway: S.-W. Wang, et al.; Int. J. Mol. Sci. 21, 1612 (2020), Sample Type(s): Human Orofacial Cell Line (Ca9-22, HGF-1 Gingival squamous cell carcinoma (GSCC) and normal gingival), Abstract — Full Text
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    文献支持
    MITO-ID® Membrane potential detection kit /ENZ-51018
    ¥3093 - 8543