The development of a new family of intracellular calcium probes

Four new potential fluorescent probes for Ca 2+ using the coumarin moiety as a fluorophore have been synthesized and their spectral properties and binding affinities for Ca 2+ determined. The most promising derivative for intracellular use, BTC, exhibits an excitation wavelength shift from 462 nm to...

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Published inCell calcium (Edinburgh) Vol. 15; no. 2; pp. 190 - 198
Main Authors Iatridou, H., Foukaraki, E., Kuhn, M.A., Marcus, E.M., Haugland, R.P., Katerinopoulos, H.E.
Format Journal Article
LanguageEnglish
Published Oxford Elsevier India Pvt Ltd 01.02.1994
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Abstract Four new potential fluorescent probes for Ca 2+ using the coumarin moiety as a fluorophore have been synthesized and their spectral properties and binding affinities for Ca 2+ determined. The most promising derivative for intracellular use, BTC, exhibits an excitation wavelength shift from 462 nm to 401 nm on binding Ca 2+, with an emission wavelength of 530 nm. The quantum yield of this probe increases from 0.07 as the free indicator to 0.12 on binding Ca 2+. BTC, loaded as its tetraacetoxymethyl ester (AM ester) into mouse myeloma P3X cells, responded only when cytoplasmic Ca 2+ exceeded typical intracellular calcium concentrations. The dye, therefore, appears to be useful in excitatory cells or extracellular spaces with intracellular calcium concentrations high enough to saturate typical excitation ratio Ca 2+ indicators such as Fura-2.
AbstractList Four new potential fluorescent probes for Ca2+ using the coumarin moiety as a fluorophore have been synthesized and their spectral properties and binding affinities for Ca2+ determined. The most promising derivative for intracellular use, BTC, exhibits an excitation wavelength shift from 462 nm to 401 nm on binding Ca2+, with an emission wavelength of 530 nm. The quantum yield of this probe increases from 0.07 as the free indicator to 0.12 on binding Ca2+. BTC, loaded as its tetraacetoxymethyl ester (AM ester) into mouse myeloma P3X cells, responded only when cytoplasmic Ca2+ exceeded typical intracellular calcium concentrations. The dye, therefore, appears to be useful in excitatory cells or extracellular spaces with intracellular calcium concentrations high enough to saturate typical excitation ratio Ca2+ indicators such as Fura-2.
Four new potential fluorescent probes for Ca super(2+) using the coumarin moiety as a fluorophore have been synthesized and their spectral properties and binding affinities for Ca super(2+) determined. The most promising derivative for intracellular use, BTC, exhibits an excitation wavelength shift from 462 nm to 401 nm on binding Ca super(2+), with an emission wavelength of 530 nm. The quantum yield of this probe increases from 0.07 as the free indicator to 0.12 on binding Ca super(2+). BTC, loaded as its tetraacetoxymethyl ester (AM ester) into mouse myeloma P3X cells, responded only when cytoplasmic Ca super(2+) exceeded typical intracellular calcium concentrations. The dye, therefore, appears to be useful in excitatory cells or extracellular spaces with intracellular calcium concentrations high enough to saturate typical excitation ratio Ca super(2+) indicators such as Fura-2.
Four new potential fluorescent probes for Ca 2+ using the coumarin moiety as a fluorophore have been synthesized and their spectral properties and binding affinities for Ca 2+ determined. The most promising derivative for intracellular use, BTC, exhibits an excitation wavelength shift from 462 nm to 401 nm on binding Ca 2+, with an emission wavelength of 530 nm. The quantum yield of this probe increases from 0.07 as the free indicator to 0.12 on binding Ca 2+. BTC, loaded as its tetraacetoxymethyl ester (AM ester) into mouse myeloma P3X cells, responded only when cytoplasmic Ca 2+ exceeded typical intracellular calcium concentrations. The dye, therefore, appears to be useful in excitatory cells or extracellular spaces with intracellular calcium concentrations high enough to saturate typical excitation ratio Ca 2+ indicators such as Fura-2.
Author Marcus, E.M.
Foukaraki, E.
Iatridou, H.
Kuhn, M.A.
Katerinopoulos, H.E.
Haugland, R.P.
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Issue 2
Keywords Analysis method
Calcium
Probe characterization
Spectral properties
Intracellular
Chemical synthesis
Quantitative analysis
Language English
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Snippet Four new potential fluorescent probes for Ca 2+ using the coumarin moiety as a fluorophore have been synthesized and their spectral properties and binding...
Four new potential fluorescent probes for Ca2+ using the coumarin moiety as a fluorophore have been synthesized and their spectral properties and binding...
Four new potential fluorescent probes for Ca super(2+) using the coumarin moiety as a fluorophore have been synthesized and their spectral properties and...
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SubjectTerms Analytical biochemistry: general aspects, technics, instrumentation
Analytical, structural and metabolic biochemistry
Animals
Biological and medical sciences
Calcium - analysis
Coumarins
Fluorescent Dyes - chemical synthesis
Fluorescent Dyes - chemistry
Fluorescent Dyes - metabolism
Fundamental and applied biological sciences. Psychology
Mice
Title The development of a new family of intracellular calcium probes
URI https://dx.doi.org/10.1016/0143-4160(94)90058-2
https://www.ncbi.nlm.nih.gov/pubmed/8149419
https://search.proquest.com/docview/16884535
https://search.proquest.com/docview/76429429
Volume 15
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