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Structure and Composition of Native Membrane Derived Polymer-Supported Lipid Bilayers

机译:天然膜衍生聚合物支持的脂质双层的结构和组成

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Over the last two decades, supported lipid bilayers (SLBs) have been extensively used as model systems to study cell membrane structure and function. While SLBs have been traditionally produced from simple lipid mixtures, there has been a recent surge in compositional complexity to better mimic cellular membranes and thereby bridge the gap between classic biophysical approaches and cell experiments. To this end, native cellular membrane derived SLBs (nSLBs) have emerged as a new category of SLBs. As a new type of biomimetic material, an analytical workflow must be designed to characterize its molecular composition and structure. Herein, we demonstrate how a combination of fluorescence microscopy, neutron reflectometry, and secondary ion mass spectrometry offers new insights on structure, composition, and quality of nSLB systems formed using so-called hybrid vesicles, which are a mixture of native membrane material and synthetic lipids. With this approach, we demonstrate that the nSLB formed a continuous structure with complete mixing of the synthetic and native membrane components and a molecular stoichiometry that essentially mirrors that of the hybrid vesicles. Furthermore, structural investigation of the nSLB revealed that PEGylated lipids do not significantly thicken the hydration layer between the bilayer and substrate when on silicon substrates; however, nSLBs do have more topology than their simpler, purely synthetic counterparts. Beyond new insights regarding the structure and composition of nSLB systems, this work also serves to guide future researchers in producing and characterizing nSLBs from their cellular membrane of choice.
机译:在过去的二十年中,支持的脂质双层(SLB)被广泛用作研究细胞膜结构和功能的模型系统。虽然SLB传统上由简单的脂质混合物产生,但最近在成分复杂性上浪涌以更好的模拟细胞膜,从而弥合经典的生物物理方法和细胞实验之间的间隙。为此,本土细胞膜衍生的SLB(NSLBS)被出现为新的SLB类别。作为一种新型的仿生材料,必须设计分析工作流程以表征其分子组合物和结构。在此,我们证明了荧光显微镜,中子反射测量和二次离子质谱的组合如何对使用所谓的杂化囊泡形成的NSLB系统的结构,组合物和质量提供新的见解,这是天然膜材料和合成的混合物脂质。通过这种方法,我们表明NSLB形成了合成和天然膜组分的完全混合的连续结构和基本上反映了杂交囊泡的分子化学计量。此外,NSLB的结构研究表明,当在硅基板上时,Pegymated脂质在双层和基板之间不会显着地增厚。然而,NSLBS确实比他们更简单,纯合成的对应物更多的拓扑。除了关于NSLB系统的结构和组成的新见解,这项工作还用于引导未来的研究人员从他们的蜂窝膜中产生和表征NSLBS。

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