
Fluo-4, AM, cell permeant - Thermo Fisher Scientific
Fluo-4 is an analog of fluo-3 with the two chlorine substituents replaced by fluorines, which results in increased fluorescence excitation at 488 nm and consequently higher fluorescence signal …
Fluo-4 - Wikipedia
Fluo-4 is used to measure calcium (Ca 2+) concentrations inside living cells, and is often used for high-throughput screening of receptor ligands and calcium permeable ion channels. The green …
碧云天生物技术-Fluo-4 AM (钙离子荧光探针, 2mM)(S1060)
Fluo-4 AM是最常用的检测细胞内钙离子浓度的荧光探针之一。 分子式为C 51 H 50 F 2 N 2 O 23,分子量为1096.95。 Fluo-4 AM在Fluo-3 AM的基础上改进而成,其特点是加载更快并且 …
Fluo-4 Calcium Imaging Kit - Thermo Fisher Scientific
The Fluo-4 Calcium Imaging Kit contains all of the necessary components for the detection of calcium flux by imaging applications. In addition to Fluo-4 dye, the kit contains PowerLoad™ …
BD Pharmingen™ Fluo-4 AM - BD Biosciences
BD Pharmingen™ Fluo-4 AM is a cell-permeant dye that can be used to measure the intracellular ionized calcium concentration, [Ca 2+]i. The hydrophobic acetomethoxy (AM) moiety allows …
Fluo-4 AM | Ca2+ Indicator - MedChemExpress
Fluo-4 AM is a cell-permeable Ca2+ (calcium ion) indicator. - Mechanism of Action & Protocol.
How does fluo 4 am work? - SyronOptics
Fluo-4 AM is a widely used fluorescent dye for measuring intracellular calcium (Ca 2+) levels, a critical parameter in various physiological and pathological processes. The mechanism of Fluo …
Fluo-4 AM, green fluorescent calcium indicator | CAS#:273221-67-3
Fluo-4 AM is a cell-permeable calcium ion indicator that is metabolized by intracellular esterase, leading to a bright green fluorescent signal upon calcium ion binding. Fluo-4 AM is well suited …
Fluo-4 AM - AAT Bioquest
2024年9月5日 · Fluo-4 AM is a cell permeable, green fluorescent calcium probe used in fluorescence microscopy and flow cytometry. Fluo-4 belongs to a class of intensiometric …
Fluo-4 AM | Calcium Signaling Probes and Ca2+ Indicator Dyes
Fluo-4 AM is a cell-permeable, fluorescent Ca 2+ indicator (K d Ca 2+ = 345 nM). Displays no resting signal and 100-fold increase in emission intensity upon Ca 2+ binding. …
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