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Results for "

labile copper pools

" in MedChemExpress (MCE) Product Catalog:

5

Inhibitors & Agonists

3

Fluorescent Dyes

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Cat. No. Product Name Target Research Areas Chemical Structure
  • HY-W753658

    Fluorescent Dye Others
    Coppersensor-3 (CS3) is a bright small-molecule fluorescent probe for selective Cu(I) detection. Coppersensor-3 is selective and sensitive enough to image labile copper pools in living cells at endogenous, basal levels. Coppersensor-3 can be used for the cell biology of copper research .
    Coppersensor-3
  • HY-D3282

    Fluorescent Dye Metabolic Disease
    CCF1 is a carbon-rhodol-based turn-on fluorescent copper sensor with high selectivity for Cu + over other biologically relevant metal ions. CCF1 detects changes in labile copper pools in living cells upon copper supplementation and/or depletion. CCF1 identifies elevations in labile copper pools in Atp7a -/ - fibroblast cell models. CCF1 can be used for the research of Menkes disease .
    CCF1
  • HY-D3241

    Fluorescent Dye Others
    CD649.2 is a red-emitting copper-targeted acylimidazole-reactive Fluorescent probe and a highly specific Cu 2+ detection reagent. CD649.2 enables visualization of labile Cu 2+ pools and their dynamic changes in living cells .
    CD649.2
  • HY-D3284

    Fluorescent Dye Others
    CSF1 is a silicon-rhodamine-based, fluorescence-activatable probe with selectivity for Cu +. CSF1 colocalizes with the endoplasmic reticulum in live cells .
    CSF1
  • HY-W783351

    coppersensor 790 acetoxymethyl ester

    Fluorescent Dye Metabolic Disease
    CS790AM (Coppersensor 790 acetoxymethyl ester) is a cell-permeable, Cu +-targeted near-infrared fluorescent probe (λabs=760 nm, λem=790 nm) applicable to live cells. CS790AM can cross lipophilic cell membranes, and is converted into negatively charged CS790 under the action of intracellular esterases to be retained, thus enabling highly sensitive, reversible "turn-on" detection of labile Cu + pools in live cells and mice. CS790AM possesses excellent biocompatibility and selectivity, avoids interference from other metal ions, shows no obvious toxicity, and can be rapidly cleared. CS790AM allows long-term longitudinal monitoring of individual mice, visualizes copper levels in internal organs and isolated livers, and effectively evaluates abnormal copper accumulation in Wilson's disease models (Atp7b -/-) as well as dynamic changes after chelator treatment. CS790AM can be used for research on Wilson's disease and related copper metabolic disorders .
    CS790AM

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