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Nanostructured Lipid-Based Films for Substrate-Mediated Applications in Biotechnology

机译:用于生物技术中底物介导的基于脂质的纳米结构薄膜

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摘要

Amphiphilic in nature, lipids spontaneously self-assemble into a range of nanostructures in the presence of water. Among lipid self-assembled structures, liposomes and supported lipid bilayers have long held scientific interest for their main applications in drug delivery and plasma membrane models, respectively. In contrast, lipid-based multilayered membranes on solid supports only recently begin drawing scientists' attention. Current studies show that the stacking of multiple bilayers on a solid support yields cooperative structural and dynamic behavior that enables new functionalities. Lipid films provide compartmentalization, templating, and enhanced release of molecules of interest. Importantly, supported lipid phases exhibit long-range periodic nanoscale order and orientation that is tunable in response to a changing environment. Herein, the current understanding of lipid-based film research is summarized focusing on how unique structural characteristics enable the emergence of new applications including label-free biosensors, macroscale drug delivery, and substrate-mediated gene delivery. The authors' recent contributions focusing on the structural characterization of lipid-based films using small-angle X-ray scattering and atomic force microscopy are highlighted. In addition, new photothermally induced resonance and solid-state nuclear magnetic resonance data are described, providing insights into drug partition in lipid-based films as well as structure and dynamics at the molecular scale.%1704356.1-1704356.20
机译:本质上是两亲的,脂质在水的存在下自发地自组装成一系列纳米结构。在脂质自组装结构中,脂质体和支持的脂质双层因其分别在药物递送和质膜模型中的主要应用而长期受到科学关注。相反,固体支持物上基于脂质的多层膜直到最近才开始引起科学家的注意。当前的研究表明,在固体支持物上堆叠多个双层会产生协同的结构和动态行为,从而实现新的功能。脂质膜提供了分隔,模板化和增强了目标分子的释放。重要的是,负载的脂质相表现出可响应环境变化而调节的长周期周期性纳米级有序和取向。在此,对基于脂质的薄膜研究的当前理解进行了总结,重点在于独特的结构特征如何使新应用的出现,包括无标记生物传感器,大规模药物输送和底物介导的基因输送。着重介绍了作者最近对使用小角度X射线散射和原子力显微镜对脂质基薄膜进行结构表征的贡献。此外,还描述了新的光热诱导共振和固态核磁共振数据,从而提供了对基于脂质的薄膜中药物分配以及分子尺度上的结构和动力学的见解。%1704356.1-1704356.20

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