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A Flavone-Based Solvatochromic Probe with A Low Expected Perturbation Impact on the Membrane Physical State

机译:一种基于黄酮的溶解度探针,对膜物理状态的预期扰动影响低。

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摘要

The study of the cell membrane is an ambitious and arduous objective since its physical state is regulated by a series of processes that guarantee its regular functionality. Among the different methods of analysis, fluorescence spectroscopy is a technique of election, non-invasive, and easy to use. Besides, molecular dynamics analysis (MD) on model membranes provides useful information on the possibility of using a new probe, following its positioning in the membrane, and evaluating the possible perturbation of the double layer. In this work, we report the rational design and the synthesis of a new fluorescent solvatochromic probe and its characterization in model membranes. The probe consists of a fluorescent aromatic nucleus of a 3-hydroxyflavone moiety, provided with a saturated chain of 18 carbon atoms and a zwitterionic head so to facilitate the anchoring to the polar heads of the lipid bilayer and avoid the complete internalization. It was possible to study the behavior of the probe in GUV model membranes by MD analysis and fluorescence microscopy, demonstrating that the new probe can efficiently be incorporated in the lipid bilayer, and give a color response, thanks to is solvatochromic properties. Moreover, MD simulation of the probe in the membrane supports the hypothesis of a reduced perturbation of the membrane physical state.
机译:细胞膜的研究是一种雄心勃勃和艰巨的目标,因为其物理状态由一系列保证其常规功能的一系列过程来调节。在不同的分析方法中,荧光光谱是一种选举技术,非侵入性,易于使用。此外,模型膜上的分子动力学分析(MD)提供了有关在膜中定位后使用新探针的可能性的有用信息,并评估双层可能的扰动。在这项工作中,我们报告了一种合理的设计和新型荧光溶性溶色探针的合成及其在模型膜中的表征。探针由3-羟基黄酮部分的荧光芳香核组成,具有饱和链条的18个碳原子和两性离子头,以便于锚固到脂质双层的极性头部并避免完全的内化。通过MD分析和荧光显微镜可以研究探针在Guv模型膜中的行为,证明新探针可以有效地掺入脂质双层中,并表示是溶于溶色的变色性质。此外,膜中探针的MD模拟支持膜物理状态减少的扰动的假设。

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