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停流荧光计死时间的测定。

Determination of the dead time of a stopped-flow fluorometer.

作者信息

Brissette P, Ballou D P, Massey V

机构信息

Department of Biological Chemistry, University of Michigan, Ann Arbor 48109.

出版信息

Anal Biochem. 1989 Sep;181(2):234-8. doi: 10.1016/0003-2697(89)90235-2.

Abstract

This investigation was carried out to develop a convenient alternative method for examining the performance and determining the dead time of a stopped-flow fluorometer. We examined the kinetics for the formation of the fluorescent Mg2+-8-hydroxyquinoline chelate in aqueous solutions. The reversible association of the Mg2+ ion with 8-hydroxyquinoline is a second-order process whose on and off rate constants are dependent on pH. We estimated that the Mg2+ ion chelate has a fluorescence quantum yield of 0.02 in aqueous solutions. Using this reaction we measured the dead time of a stopped-flow fluorometer at different pH values. Measurements of the dead time were found to be reproducible and accurate. The Mg2+-8-hydroxyquinoline reaction fulfills the requirements for a convenient test reaction for dead time measurement of stopped-flow fluorometers. Although the usefulness of the reaction is primarily to determine the dead times of stopped-flow instruments operating in the fluorescence mode, the reaction can also be used for testing an instrument operating in the absorbance mode.

摘要

开展本研究是为了开发一种便捷的替代方法,用于检测停流荧光计的性能并确定其死时间。我们研究了水溶液中荧光性镁离子-8-羟基喹啉螯合物形成的动力学。镁离子与8-羟基喹啉的可逆缔合是一个二级过程,其结合和解离速率常数取决于pH值。我们估计镁离子螯合物在水溶液中的荧光量子产率为0.02。利用该反应,我们在不同pH值下测量了停流荧光计的死时间。发现死时间的测量具有可重复性和准确性。镁离子-8-羟基喹啉反应满足作为停流荧光计死时间测量便捷测试反应的要求。尽管该反应的主要用途是确定以荧光模式运行的停流仪器的死时间,但该反应也可用于测试以吸光度模式运行的仪器。

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