15 Results for "

acetoxymethyl (AM) ester

" in MedChemExpress (MCE) Product Catalog:
Products (15)

15 Results for "acetoxymethyl (AM) ester" in MCE Product Catalog:

90
90 Publications Verification
Cat. No.: HY-D0041
CAS No.: 148504-34-1
Synonyms: Calcein acetoxymethyl ester
Calcein AM, has cell membrane permeability and can easily enter the cell. Calcein AM has no fluorescence and is hydrolyzed by endogenous esterase in the cell to produce polar molecule Calcein (Calcein), which has strong negative charge and cannot permeate the cell membrane. Calcein can emit strong green fluorescence, so it is often used with Propidium Iodide for cell viability/virulence detection, excitation/emission wavelength: 494/515 nm .
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11
11 Cited Publications
Cat. No.: HY-D0973
CAS No.: 99590-86-0
Synonyms: EGTA acetoxymethyl ester
EGTA-AM is a membrane permeable form of EGTA, can be passively loaded into cells to generate intracellular EGTA; EGTA-AM is also a Ca 2+ chelator with slow chelating dynamics.
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9
9 Cited Publications
Cat. No.: HY-101897
CAS No.: 108964-32-5
Purity:  99%
Synonyms: Fura-2 acetoxymethyl ester
Fura-2 AM is a membrane permeable, intracellular, UV light-excitable and ratiometric fluorescent Ca 2+ (calcium ion) indicator. Fura-2 AM crosses cell membranes and is converted to Fura-2 (HY-D0110A) via cellular esterases. Fura-2 AM can be used to detect calcium in cells.
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2
2 Cited Publications
Cat. No.: HY-D1746
CAS No.: 162303-59-5
Synonyms: EDTA acetoxymethyl ester; Ethylenediaminetetraacetic acid acetoxymethyl ester
EDTA-AM (ethylenediaminetetraacetic acid, acetoxymethyl ester) is the membrane-permeant form of the metal chelator EDTA (HY-Y0682). Live cells passively load EDTA-AM by incubating with EDTA-AM. Once internalized, cytoplasmic esterase decomposes AM esters, releasing the active ligand EDTA, which isolates metal ions within the cell. EDTA-AM induces an arrest of mitotic progression and chromosome decondensation .
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2
2 Cited Publications
Cat. No.: HY-141894
CAS No.: 2990123-10-7
Purity:  99.04%
Research Areas:  

Metabolic Disease

5-Ph-IAA-AM is an eggshell-permeable 5-Ph-IAA (HY-134653) analog which contains an acetoxymethyl (AM) group. 5-Ph-IAA-AM affords an enhanced protein degradation in laid embryos. 5-Ph-IAA-AM can be used to disclosure the roles of proteins in C. elegans, in particular those that are involved in embryogenesis and development, through temporally controlled protein degradation .
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1
1 Cited Publications
Cat. No.: HY-101898
CAS No.: 112926-02-0
Purity:  96%
Synonyms: Indo-1 acetoxymethyl ester
Calcium is an important part of the human body, usually in the form of calcium, a large number of bones and teeth of the human body, a small amount of blood and tissues. MCE calcium ion detection probe can specifically identify intracellular calcium ions, with high sensitivity, low cytotoxicity, increased AM acetylmethyl ester can enter the cell well, after being sheared by the intracellular esterase stay in the cell to bind to calcium ions, produce strong fluorescence, in addition, Mag-indo-1/AM and Mag-Fluo-4 AM at a certain concentration (usually 5 mM) can effectively identify intracellular magnesium ions .
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1
1 Cited Publications
Cat. No.: HY-124298
CAS No.: 168482-84-6
Purity:  99.00%
Target:  

Fluorescent Dye

Research Areas:  

Others

Calcein Blue AM is a cell staining agent. Calcein Blue AM serves as a substrate for intracellular esterases, which hydrolyze its acetoxymethyl (AM) ester group to convert the non-fluorescent reagent into fluorescent Calcein Blue. Calcein Blue AM passively penetrates the plasma membrane of both live and dead cells; it is converted into a polar fluorescent product and retained in the cytoplasm of live cells, whereas dead cells cannot retain the dye. Calcein Blue AM exhibits significant dye leakage, and its fluorescence intensity gradually decreases over time. Calcein Blue AM can be used for endpoint-based cell viability assays and short-term cell tracking experiments with a duration of no more than 4 hours.
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Cat. No.: HY-D1631
CAS No.: 216699-33-1
Calcium Green-5N AM is a Ca 2+-sensitive fluorescent probe (Kd = 14 μM). Calcium Green-5N AM shows enhanced fluorescence intensity upon binding to Ca 2+, and it can monitor free Ca 2+ in neurons .
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Cat. No.: HY-158741
CAS No.: 1369302-24-8
Synonyms: APG-2 acetoxymethyl ester
IPG-2 AM (APG-2 Acetoxymethyl ester) is a membrane-permeant acetoxymethyl ester derivative and selective fluorescent potassium ion indicator. IPG-2 AM exhibits fluorescence increases proportional to extracellular potassium ion concentrations. IPG-2 AM enables real-time monitoring of cytosolic free potassium ion fluxes in human platelets and macrophages. IPG-2 AM can be used for the research of intracellular potassium concentration dynamics .
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Cat. No.: HY-158746
CAS No.: 1070771-36-6
Synonyms: Fluo-2 acetoxymethyl ester; Fluo-2 ha; Fluo-2 high affinity
Fluo-2 AM (Fluo-2 acetoxymethyl ester) is a fluorescent dye, that can be used for detection of intracellular calcium ion concentration .
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Cat. No.: HY-101902
CAS No.: 83104-85-2
Synonyms: Quin-2 acetoxymethyl ester
Quin-2AM is a fluorecent Ca 2+ chelator, with high affinity for calcium. Quin-2AM can specifically identify intracellular calcium ions, with high sensitivity, low cytotoxicity, increased AM acetylmethyl ester can enter the cell well, after being sheared by the intracellular esterase stay in the cell to bind to calcium ions, produce strong fluorescence .
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Cat. No.: HY-DY1101
CAS No.: 108964-32-5
Synonyms: Fura-2 acetoxymethyl ester (solution)
Fura-2 AM (solution) (Fura-2 Acetoxymethyl ester (solution)) is a membrane permeable, intracellular, UV light-excitable and ratiometric fluorescent Ca 2+ (calcium ion) indicator. Fura-2 AM crosses cell membranes and is converted to Fura-2 (HY-D0110A) via cellular esterases. Fura-2 AM can be used to detect calcium in cells.
Solvent and concentration: DMSO: 1 mM
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Cat. No.: HY-130575
CAS No.: 348079-12-9
Purity:  95.00%
Fura-FF AM is a cell-permeable acetoxymethyl ester of fura-FF, a dluorescent calcium indicator. Fura-FF AM is hydrolyzed by intracellular esterases to release fura-FF in cells. Fura-FF is a difluorinated derivative of the calcium indicator fura-2. Compared to fura-2, fura-FF has a low affinity for calcium and is suitable for studying compartments with high concentrations of calcium.
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Cat. No.: HY-W783351
CAS No.: 1416808-87-1
Synonyms: Coppersensor 790 acetoxymethyl ester
Target:  

Fluorescent Dye

Research Areas:  

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 .
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Cat. No.: HY-D3074
Research Areas:  

Others

TCM-4COOH is an AIE-active fluorescent probe for calcium ions. TCM-4COOH relies on aggregation-induced emission activity, and its carboxyl chelating group can bind to Ca 2+ and Mg 2+ to form insoluble aggregates, triggering fluorescence enhancement via restricting intramolecular motion (Ex/Em = 477/603 nm). TCM-4COOH shows pH independence in physiological environments (pH 4-9), can be strongly activated at Ca 2+ concentrations ranging from low nM to mM, and has a stronger binding ability to Ca 2+ than to Mg 2+. TCM-4COOH, as its acetoxymethyl ester derivative TCM-AM, can penetrate cell membranes for intracellular detection. TCM-4COOH can be used for imaging of cellular calcium overload, detection of bone microcracks, and studies related to calcium-rich biological environments .
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