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不对称函数的荧光光谱分解:再探 Laurdan 谱。

Fluorescence spectra decomposition by asymmetric functions: Laurdan spectrum revisited.

机构信息

Department of Life and Environmental Physics, Horia Hulubei National Institute of Physics and Nuclear Engineering, 077125 Magurele, Romania.

出版信息

Anal Biochem. 2013 Sep 15;440(2):123-9. doi: 10.1016/j.ab.2013.05.031. Epub 2013 Jun 6.

Abstract

Due to their asymmetric nature, complex fluorescence spectra of molecules can be analyzed much better by log-normal distributions than by Gaussian ones. So far, the log-normal function has been used for deconvolution of emission spectra of different fluorescent molecules, such as Tryptophan and Prodan, but to our knowledge it is far less used for Laurdan (2-dimethylamino-6-lauroylnaphthalene). In this article, we present the decomposition of Laurdan emission spectra in large unilamellar vesicles using a procedure that relies on the log-normal asymmetric function. The procedure was calibrated using Laurdan spectra in homogeneous solutions of various solvents. Comparing our results with the ones obtained from a Gaussian fit, we show that (i) the position of the elementary peaks (~440 and 490 nm) is preserved in a large range of temperatures that include the main phase transition of lipid bilayer and (ii) the bilayer hydration, as reported by Laurdan, increases approximately 8 times from the gel phase to the liquid crystalline one, a result that fits with other reports, providing a more realistic description. In addition, we propose a new parameter to globally evaluate Laurdan emission spectra with the prospect of acquiring a larger range of values than the classical "generalized polarization".

摘要

由于其不对称性,用对数正态分布来分析分子的复杂荧光光谱要比用高斯分布好得多。到目前为止,对数正态函数已经被用于解析不同荧光分子的发射光谱,例如色氨酸和 Prodan,但据我们所知,它在 Laurdan(2-二甲氨基-6-月桂酰萘)的应用要少得多。在本文中,我们使用依赖于对数正态不对称函数的程序来分解大单室囊泡中的 Laurdan 发射光谱。该程序使用各种溶剂的均相溶液中的 Laurdan 光谱进行校准。将我们的结果与高斯拟合的结果进行比较,我们表明:(i)在包括脂质双层主要相变的较大温度范围内,基本峰(~440 和 490nm)的位置得以保留;(ii)正如 Laurdan 所报道的,双层水合作用从凝胶相增加到液晶相大约 8 倍,这一结果与其他报告相符,提供了更现实的描述。此外,我们提出了一个新的参数来全局评估 Laurdan 发射光谱,有望获得比经典的“广义极化”更大的范围值。

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