首页> 外文期刊>Biochimica et biophysica acta: international journal of biochemistry and biophysics >Fluorescence quenching data interpretation in biological systems. The use of microscopic models for data analysis and interpretation of complex systems.
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Fluorescence quenching data interpretation in biological systems. The use of microscopic models for data analysis and interpretation of complex systems.

机译:生物系统中的荧光猝灭数据解释。使用微观模型进行复杂系统的数据分析和解释。

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摘要

In micro-heterogeneous media (e.g. membranes, micelles and colloidal systems), the fluorescence decay in the absence of quencher is usually intrinsically complex, e.g. due to the existence of several sub-populations with different micro-environments. In this case it is impossible to analyze data in detail (accounting for transient effects) and simpler formalisms are needed. The objective of the present work is to present and discuss such simpler formalisms. The goal is to achieve simple data analysis and meaningful, clear data interpretation in complex systems using microscopic models that consider several sub-populations of chromophores. Two points are dealt with in detail. (i) It is shown that the approximation of the transient effects by the quenching sphere-of-action model is not always possible. The quenching sphere-of-action concept can be regarded as a valuable tool, although crude, only in a limited range of experimental conditions, namely time resolution. (ii) The Stern-Volmer equation usually used for data analysis is only valid for a limited range of small and moderate equilibrium association constants, Ka, although this is frequently overlooked in the literature. Self-consistency criteria are presented for the proposed methods. The well-known downward curvature due to a fraction of fluorophores which is not accessible to the quencher is only a limiting case from a set of possible situations which result in deviations to linearity. A systematic classification of the different types of quenching is presented.
机译:在微非均质介质(例如膜,微团和胶体系统)中,在没有淬灭剂的情况下荧光衰减通常是本质上复杂的,例如由于存在具有不同微环境的几个亚群。在这种情况下,不可能详细分析数据(考虑瞬态效应),并且需要更简单的形式。本工作的目的是介绍和讨论这种更简单的形式主义。目标是使用考虑生色团的多个子种群的微观模型,在复杂的系统中实现简单的数据分析和有意义的,清晰的数据解释。详细说明两点。 (i)表明,淬火作用球模型并不总是能够近似瞬态效应。淬灭作用域概念虽然是粗略的,但可以认为是有价值的工具,但只能在有限的实验条件范围内,即时间分辨率。 (ii)通常用于数据分析的Stern-Volmer方程仅对有限范围的中小平衡缔合常数Ka有效,尽管这在文献中经常被忽略。为所提出的方法提出了自洽标准。众所周知,由于荧光团的一部分而导致的向下弯曲是淬灭剂无法接近的,这只是一组可能情况的极限情况,这些情况会导致线性偏差。介绍了不同类型淬火的系统分类。

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