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溶剂变色染料在脂质和细胞膜中对脉冲激发的单一响应。

Unitary Response of Solvatochromic Dye to Pulse Excitation in Lipid and Cell Membranes.

机构信息

Department of Medical and Biological Physics, Technical University Dortmund, 44227 Dortmund, Germany.

出版信息

Langmuir. 2022 Oct 11;38(40):12408-12413. doi: 10.1021/acs.langmuir.2c02261. Epub 2022 Sep 26.

Abstract

The existence of acoustic pulse propagation in lipid monolayers at the air-water interface is well known. These pulses are controlled by the thermodynamic state of the lipid membrane. Nevertheless, the role of acoustic pulses for intra- and inter-cellular communication is still a matter of debate. Herein, we used the dye di-4-ANEPPDHQ, which is known to be sensitive to the physical state and transmembrane potential of membranes, in order to gain insights into compression waves in lipid-based membrane interfaces. The dye was incorporated into lipid monolayers made of phosphatidylserine or phosphatidylcholine at the air-water-interface. A significant blue shift of the emission spectrum was detected when the state of the monolayer was changed from the liquid-expanded (LE) to the liquid-condensed (LC) phase. This "transition sensitivity" of di-4-ANEPPDHQ was generalized in experiments with the bulk solvent dimethyl sulfoxide (DMSO). Upon crystallization of solvent, the emission spectrum also underwent a blue shift. During compression pulses in lipid monolayers, a significant fluorescence response was only observed when the main transition is crossed. The optical signature of these waves─in terms of sign and magnitude─was identical to the response of di-4-ANEPPDHQ during action potentials in neurons and excitable plant cells. These findings corroborated the suggestion that action potentials are nonlinear state changes that propagate in the cell membrane.

摘要

在气-水界面的脂质单层中存在声波脉冲传播是众所周知的。这些脉冲受脂质膜的热力学状态控制。然而,声波脉冲在细胞内和细胞间通讯中的作用仍存在争议。在此,我们使用了对膜的物理状态和跨膜电位敏感的染料二-4-ANEPPDHQ,以深入了解基于脂质的膜界面中的压缩波。该染料被掺入由磷脂酰丝氨酸或磷脂酰胆碱制成的气-水界面的脂质单层中。当单层状态从液体膨胀(LE)变为液体凝聚(LC)相时,检测到发射光谱的明显蓝移。这种二-4-ANEPPDHQ 的“转变灵敏度”在与体相溶剂二甲亚砜(DMSO)的实验中得到了推广。当溶剂结晶时,发射光谱也发生蓝移。在脂质单层中的压缩脉冲期间,仅当主转变被跨越时才观察到明显的荧光响应。这些波的光学特征(就符号和幅度而言)与神经元和可兴奋植物细胞中动作电位期间二-4-ANEPPDHQ 的响应相同。这些发现证实了动作电位是在细胞膜中传播的非线性状态变化的观点。

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