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首页> 外文期刊>Analytical chemistry >Evaluating the Cell Membrane Penetration Potential of Lipid-Soluble Compounds Using Supported Phospholipid Bilayers
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Evaluating the Cell Membrane Penetration Potential of Lipid-Soluble Compounds Using Supported Phospholipid Bilayers

机译:使用负载磷脂双层评估脂溶性化合物的细胞膜渗透电位

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摘要

Supported phospholipid bilayers (SPBs) are promising models for studying the passive penetration of lipid-soluble compounds into cells and cell membranes. A widely used tool to characterize molecular SPB interactions is the quartz crystal microbalance with dissipation monitoring (QCM-D). As QCM-D provides access to the mass density of supported membranes, it is well-suited to examine surface adsorption and membrane disruption phenomena. In the present study, we report on a novel approach to characterize SPB interactions with low molecular weight lipid-soluble substances. SPBs were formed on a silica-coated QCM-D crystal, exposed to various phenolic compounds (vanillin, gallic acid, and protocatechualdehyde), and subjected to linear temperature variation. While the exposure of the SPBs to the phenolic compounds did not result in detectable mass density changes, we observed noticeable alterations in their gel-fluid phase transitions. It was found that QCM-D can detect small variations in a SPB's main transition temperature ( 1 degrees C) and further resolve compound-specific lipid interactions. The acoustic sensing technique thus offers great potential for the use of supported membranes as stable and versatile model systems to study the transport of lipid-soluble substances into phospholipid bilayers and to assess their interactions therein.
机译:支持的磷脂双层(SPB)是研究脂溶性化合物的被动渗透到细胞和细胞膜中的前途模型。用于表征分子SPB相互作用的广泛使用的工具是具有耗散监测(QCM-D)的石英晶体微稳定。由于QCM-D提供对负载膜的质量密度的访问,因此非常适合检查表面吸附和膜中断现象。在本研究中,我们报告了一种与低分子量脂质可溶物质表征SPB相互作用的新方法。在二氧化硅涂覆的QCM-D晶体上形成SPB,暴露于各种酚类化合物(Vanillin,Gallic酸和Protocatechualdehyde),并进行线性温度变化。虽然SPBS对酚类化合物的暴露不会导致可检测的质量密度变化,但我们观察到它们的凝胶流体相转变中明显的改变。发现QCM-D可以检测SPB的主过渡温度(& 1℃)的小变化,并进一步分解化合物特异性脂质相互作用。因此,声学传感技术提供了使用负载膜作为稳定和通用的模型系统的潜力,以研究将脂溶性物质传输到磷脂双层中并评估它们的相互作用。

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