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Article Dans Une Revue Physical Chemistry Chemical Physics Année : 1999

Photophysics of Calcium Green 1 in vitro and in live cells

Résumé

The absolute measurement of calcium activity in cells is hindered by the presence of di†erent forms of the probe (adsorbed, protonated). Time-resolved Ñuorescence spectroscopy can be a sensitive technique to separate contaminating forms of the probe. The Ñuorescent probe Calcium Green 1 was characterised, in vitro, in terms of calcium and also pH dependence, albumin adsorption, extent of hydrolysis, viscosity and medium polarity. A 1 : 1 stoichiometry was obtained for the calcium complexation with a Kd value that agrees with reported values. A pKa of the BAPTA moiety was measured as 6.7. The Ñuorescence lifetimes are slightly dependent on polarity but not on viscosity. It was observed that most of the interfering forms of the probe share the common lifetimes of 0.5 and 3.5 ns. An alternative mechanism for Calcium Green 1 sensing is proposed based on a ground state conformational equilibrium a†ecting the photoinduced electron transfer.

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Dates et versions

hal-00842088 , version 1 (07-07-2013)

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  • HAL Id : hal-00842088 , version 1

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Laetitia Schoutteten, Patrick Denjean, Jean Faure, Robert Bernard Pansu. Photophysics of Calcium Green 1 in vitro and in live cells. Physical Chemistry Chemical Physics, 1999, 1, pp.2463-2469. ⟨hal-00842088⟩
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