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Pathways Recommended: Membrane Transporter/Ion Channel
Results for "

membrane potential fluorescence dye

" in MedChemExpress (MCE) Product Catalog:

9

Inhibitors & Agonists

9

Fluorescent Dye

Cat. No. Product Name Target Research Areas Chemical Structure
  • HY-D1427

    Fluorescent Dye Neurological Disease
    Di-2-ANEPEQ is a voltage sensitive membrane potential fluorescence dye. Di-2-ANEPEQ can be used for the evaluation of voltage-sensitive fluorescence dyes for monitoring neuronal activity in the embryonic central nervous system .
    Di-2-ANEPEQ
  • HY-D0309

    Basic Red 1

    Fluorescent Dye Cancer
    Rhodamine dyes are membrane-permeable cationic fluorescent probes that specifically recognize mitochondrial membrane potentials, thereby attaching to mitochondria and producing bright fluorescence, and at certain concentrations, rhodamine dyes have low toxicity to cells, so they are commonly used to detect mitochondria in animal cells, plant cells, and microorganisms .
    Rhodamine 6G
  • HY-D0816
    Rhodamine 123
    10+ Cited Publications

    RH-123; R-22420

    Fluorescent Dye Cardiovascular Disease
    Rhodamine dyes are membrane-permeable cationic fluorescent probes that specifically recognize mitochondrial membrane potentials, thereby attaching to mitochondria and producing bright fluorescence, and at certain concentrations, rhodamine dyes have low toxicity to cells, so they are commonly used to detect mitochondria in animal cells, plant cells, and microorganisms .
    Rhodamine 123
  • HY-D0985A
    TMRE
    Maximum Cited Publications
    24 Publications Verification

    Tetramethylrhodamine ethyl ester perchlorate

    Fluorescent Dye Others
    Rhodamine dyes are membrane-permeable cationic fluorescent probes that specifically recognize mitochondrial membrane potentials, thereby attaching to mitochondria and producing bright fluorescence, and at certain concentrations, rhodamine dyes have low toxicity to cells, so they are commonly used to detect mitochondria in animal cells, plant cells, and microorganisms .
    TMRE
  • HY-101876

    Fluorescent Dye Others
    Rhodamine dyes are membrane-permeable cationic fluorescent probes that specifically recognize mitochondrial membrane potentials, thereby attaching to mitochondria and producing bright fluorescence, and at certain concentrations, rhodamine dyes have low toxicity to cells, so they are commonly used to detect mitochondria in animal cells, plant cells, and microorganisms .
    Rhodamine 800
  • HY-D0984

    Fluorescent Dye Inflammation/Immunology
    Rhodamine dyes are membrane-permeable cationic fluorescent probes that specifically recognize mitochondrial membrane potentials, thereby attaching to mitochondria and producing bright fluorescence, and at certain concentrations, rhodamine dyes have low toxicity to cells, so they are commonly used to detect mitochondria in animal cells, plant cells, and microorganisms .
    TMRM
  • HY-D0984A
    TMRM Perchlorate
    10+ Cited Publications

    T668

    Fluorescent Dye Others
    Rhodamine dyes are membrane-permeable cationic fluorescent probes that specifically recognize mitochondrial membrane potentials, thereby attaching to mitochondria and producing bright fluorescence, and at certain concentrations, rhodamine dyes have low toxicity to cells, so they are commonly used to detect mitochondria in animal cells, plant cells, and microorganisms .
    TMRM Perchlorate
  • HY-D1426

    Fluorescent Dye Neurological Disease
    Di-12-ANEPPQ is a fast-responding membrane potential dye. Di-12-ANEPPQ, the lipophilic dye, shows cell-specific loading and Golgi-like staining patterns with minimal background fluorescence in the slices of neocortex and hippocampus .
    Di-12-ANEPPQ
  • HY-129763

    Fluorescent Dye Others
    Di-4-ANEPPS is a voltage-sensitive dye in membrane potential. Di-4-ANEPPS allows reaching a time resolution better than 1 ms and exhibits changes in fluorescence of up to 10% per 100 mV. Di-4-ANEPPS is a common tool for mapping cardiac electrical activity. Di-4-ANEPPS demonstrate significant direct irreversible effect on spontaneous heart rate and ventricular impulse conduction in rabbit isolated heart model .
    Di-4-ANEPPS

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