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Paramagnetic fluorescence quenching in a model membrane: a consideration of lifetime and temperature

机译:模型膜中的顺磁性荧光猝灭:寿命和温度的考虑

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摘要

To expand our understanding of paramagnetic quenching in membranes, the relationship between fluorophore excited-state lifetime (#tau#), temperature, and the collisional quenching was studied. Specifically, the ability of tempo to quench the steady-state and time-resolved emission from five lipophilic fluorophores (diphenylhexatriene, perylene, phenanthrene, pyrene, and triphenylene) partitioned into egg phosphatidylcholine (EggPC) liposomes was examined. Also, the temperature dependence of spin-labeled androstane to quench the emission (steady-state and time-resolved) from perylene in EggPC liposomes was determined. Unexpectedly, in EggPC liposomes, the apparent quenching efficiency decreased with increasing #tau# until the effect leveled off above approx20 ns. Moreover, in EggPC liposomes, dynamic quenching decreased with increasing temperature. The results suggest that in membranes, paramagnetic quenching is more complex than generally recognized.
机译:为了扩大我们对膜中顺磁性猝灭的理解,研究了荧光团激发态寿命(#tau#),温度和碰撞猝灭之间的关系。具体而言,检查了速度猝灭来自分配到卵磷脂酰胆碱(EggPC)脂质体中的五个亲脂性荧光团(二苯基己三烯,per,菲,pyr和三亚苯基)的稳态和时间分辨发射的能力。此外,还确定了自旋标记的雄烷以抑制EggPC脂质体中per的发射(稳态和时间分辨)的温度依赖性。出乎意料的是,在EggPC脂质体中,表观淬灭效率随着#tau#的增加而降低,直到效果稳定在约20 ns以上为止。此外,在EggPC脂质体中,动态淬灭随着温度的升高而降低。结果表明,在膜中,顺磁性淬灭比通常公认的更为复杂。

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