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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Biophysical Characterization of Supported Lipid Bilayers Using Parallel Dual-Wavelength Surface Plasmon Resonance and Quartz Crystal Microbalance Measurements
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Biophysical Characterization of Supported Lipid Bilayers Using Parallel Dual-Wavelength Surface Plasmon Resonance and Quartz Crystal Microbalance Measurements

机译:平行双波长表面等离子体谐振和石英晶微观测量的负载脂质双层的生物物理表征

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Supported lipid bilayers (SLBs) have been used extensively as an effective model of biological membranes, in the context of in vitro biophysics research, and the membranes of liposomes, in the context of the development of nanoscale drug delivery devices. Despite numerous surface-sensitive techniques having been applied to their study, the comprehensive optical characterization of SLBs using surface plasmon resonance (SPR) has not been conducted. In this study, Fresnel multilayer analysis is utilized to effectively calculate layer parameters (thickness and refractive indices) with the aid of dual-wavelength and dispersion coefficient analysis, in which the linear change in the refractive index as a function of wavelength is assumed. Using complementary information from impedance-based quartz crystal microbalance experiments, biophysical properties, for example, area-per-lipid-molecule and the quantity of lipid-associated water molecules, are calculated for different lipid types and mixtures, one of which is representative of a raft-forming lipid mixture. It is proposed that the hydration layer beneath the bilayer is, in fact, an integral part of the measured optical signal. Also, the traditional Jung model analysis and the ratio of SPR responses are investigated in terms of assessing the structure of the lipid layer that is formed.
机译:在体外生物物理学研究的背景下,支持的脂质双层(SLB)被广泛用作生物膜的有效模型,以及脂质体的体外生物物理学研究和脂质体的膜。尽管已经应用了许多表面敏感的技术,但是,尚未进行使用表面等离子体共振(SPR)的SLB的综合光学表征。在本研究中,菲涅耳多层分析用于借助于双波长和色散系数分析来有效地计算层参数(厚度和折射率),其中假设作为波长函数的折射率的线性变化。使用来自基于阻抗的石英晶体微稳态实验的互补信息,为不同的脂质类型和混合物计算,例如,每脂质分子和脂质相关水分子的量,其中一个是代表的形成筏式脂质混合物。提出,双层下方的水合层实际上是测量光信号的组成部分。此外,在评估形成的脂质层的结构方面,研究了传统的Jung模型分析和SPR响应的比率。

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