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Results for "

acidic organelles

" in MedChemExpress (MCE) Product Catalog:

7

Inhibitors & Agonists

3

Fluorescent Dyes

Cat. No. Product Name Target Research Areas Chemical Structure
  • HY-D0971
    Pyronin Y
    4 Publications Verification

    Pyronine G; C.I. 45005

    DNA Stain Others
    Pyronin Y (Pyronine G) is a cationic dye that intercalates RNA and has been used to target cell structures including RNA, DNA and organelles. Pyronin Y forms fluorescent complexes with double-stranded nucleic acids (especially RNA) enabling semi-quantitative analysis of cellular RNA. Pyronin Y can be used to identify specific RNA subspecies of ribonuclear proteins complexes in live cells .
    Pyronin Y
  • HY-W011063

    Cathepsin Metabolic Disease
    Gly-Phe-β-naphthylamide is a substrate of Cathepsin C (HY-P2922) and belongs to the lysosomal agonist. Gly-Phe-β-naphthylamide can freely pass through the cell membrane and organelle membrane. Gly-Phe-β-naphthylamide will be specifically hydrolyzed by Cathepsin C, ultimately leading to a permeability lysis when it enters the acidic compartment. Gly-Phe-β-naphthylamide can be used to study lysosomal hydrolysis, lysosomal membrane permeability, and the function of cathepsin C .
    Gly-Phe-β-naphthylamide
  • HY-D1445
    LysoSensor PDMPO
    1 Publications Verification

    Fluorescent Dye Metabolic Disease
    PDMPO, a lysosome pH indicator, is an excellent fluorescent acidotropic reagent for fluorescence imaging. PDMPO is a potent tool with which to study acidic organelles of live cells. PDMPO exhibits pH-dependent dual-excitation and dual-emission spectral peaks. PDMPO produces a blue fluorescence in weakly acidic organelles and shifts to yellow in more acidic lysosomes. (Abs=329 nm; Em=440/540 nm) .
    LysoSensor PDMPO
  • HY-D1457

    Fluorescent Dye Others
    DND-189, a low-pH fluorescent probe, is sensitive to neutral and low pH range. DND-189 can be used to measure the pH of acidic organelles .
    DND-189
  • HY-110334

    Fluorescent Dye Others
    FFN 206 dihydrochloride, a fluorescent probe, is used as an excellent Vesicular Monoamine Transporter 2 (VMAT2) substrate with an apparent Km of 1.16 μM. FFN 206 dihydrochloride is capable of detecting VMAT2 activity in intact cells using fluorescence microscopy, with subcellular localization to VMAT2-expressing acidic compartments without apparent labeling of other organelles .
    FFN 206 dihydrochloride
  • HY-W339816

    Lipocalin Family Endogenous Metabolite Others
    (S,R)-Bis(monomyristoylglycero)phosphate ammonium actively contributes to cargo sorting by promoting the degradation and sorting of lipids, and it plays a critical role in the sorting of polyunsaturated fatty acids (PUFAs) within acidic organelles. This phospholipid features two phosphate-linked glycerol molecules arranged in a unique sn-1 glycerophospho-sn-1′ glycerol stereoconformation, with each glycerol molecule esterified to a myristic acid. Typically, it is found in the intraluminal vesicles (ILVs) of late endosomes and lysosomes.
    (S,R)-Bis(monomyristoylglycero)phosphate ammonium
  • HY-182464

    Potassium Channel Infection Others
    DABMA is a TMEM175 channel activator with a human EC50 of 17.9 μM. DABMA directly increases TMEM175 channel current via interaction with intracellular, transmembrane, or endosomal lumen-associated domains, and does not alter TMEM175 mRNA or protein levels. DABMA delays endolysosomal substrate degradation, modulates endolysosomal trafficking, increases acidic organelle accumulation, induces cholesterol accumulation and altered late endosome morphology. DABMA can be used for the research of coronavirus disease, Clostridium difficile infection, Pseudomonas aeruginosa infection, rabies, and influenza virus infection .
    DABMA

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