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通过蛋白质-脂质相互作用观察到液晶的界面有序排列,从而实现了在液晶-水界面处对细胞质蛋白的无标记传感。

Distinct interfacial ordering of liquid crystals observed by protein-lipid interactions that enabled the label-free sensing of cytoplasmic protein at the liquid crystal-aqueous interface.

机构信息

Department of Chemical Sciences, Indian Institute of Science Education and Research Mohali (IISERM), Knowledge City, Sector-81, SAS Nagar, Mohali 140306, India.

出版信息

Analyst. 2021 Nov 22;146(23):7152-7159. doi: 10.1039/d1an01444g.

Abstract

Interfaces formed between a lipid decorated liquid crystal (LC) film and an aqueous phase can mimic the bimolecular membrane where interfacially occurring biological phenomena (, lipid-protein interactions, protein adsorption) can be visually monitored by observing the surface-sensitive orientations of LCs. The ordering behavior of LCs at different phospholipid-based LC interfaces (1,2-dilauroyl--3-phosphocholine (DLPC) and lysophosphatidic acid (LPA)) were investigated to determine the sensing of an important cytoplasmic protein (juxtamembrane of epidermal growth factor receptor (JM-EGFR)). At both DLPC and LPA decorated interfaces, the LC adopts homeotropic ordering, causing a dark optical appearance under crossed polarizers. Interestingly, upon the introduction of JM-EGFR to these LC-aqueous interfaces, the homeotropic orientation of the LC changed to planar (bright optical appearance), suggesting the potential of the designed system for JM-EGFR sensing. The use of different lipid decorated LC-aqueous interfaces results in the emergence of distinct optical patterns. For example, at a DLPC laden interface, elongated bright domains are observed, whereas a uniform bright texture is observed on an LPA laden interface. The DLPC decorated LC-aqueous interface is found to be highly selective for the sensing of JM-EGFR with a detection limit in the nanomolar concentration region (∼ 50 nM). When compared to spectroscopic and other conventional techniques, the LC-based design is simpler, and it allows the simple and label-free optical sensing of JM-EGFR at fluidic interfaces.

摘要

在具有脂类修饰的液晶 (LC) 膜和水相之间形成的界面可以模拟双分子膜,其中界面上发生的生物现象(脂-蛋白相互作用、蛋白质吸附)可以通过观察 LC 的表面敏感取向来进行可视化监测。研究了不同基于磷脂的 LC 界面(1,2-二棕榈酰基-3-磷酸胆碱 (DLPC) 和溶血磷脂酸 (LPA))处 LC 的有序行为,以确定对重要细胞质蛋白(表皮生长因子受体的胞质膜附近 (JM-EGFR))的感知。在 DLPC 和 LPA 修饰的界面上,LC 采用各向异性取向,在交叉偏振器下呈现暗光学外观。有趣的是,当将 JM-EGFR 引入这些 LC-水界面时,LC 的各向异性取向变为平面(明亮的光学外观),表明所设计系统具有潜在的 JM-EGFR 传感能力。使用不同的脂类修饰的 LC-水界面会产生不同的光学图案。例如,在 DLPC 负载的界面上观察到伸长的亮域,而在 LPA 负载的界面上观察到均匀的亮纹理。发现 DLPC 修饰的 LC-水界面对 JM-EGFR 的传感具有高度选择性,检测限在纳摩尔浓度区域(约 50 nM)。与光谱学和其他常规技术相比,基于 LC 的设计更简单,并且允许在流体界面上简单、无标记地光学感应 JM-EGFR。

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