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Emerging applications at the interface of DNA nanotechnology and cellular membranes: Perspectives from biology engineering and physics

机译:DNA纳米技术和细胞膜界面的新兴应用:生物学工程和物理学的观点

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摘要

DNA nanotechnology has proven exceptionally apt at probing and manipulating biological environments as it can create nanostructures of almost arbitrary shape that permit countless types of modifications, all while being inherently biocompatible. Emergent areas of particular interest are applications involving cellular membranes, but to fully explore the range of possibilities requires interdisciplinary knowledge of DNA nanotechnology, cell and membrane biology, and biophysics. In this review, we aim for a concise introduction to the intersection of these three fields. After briefly revisiting DNA nanotechnology, as well as the biological and mechanical properties of lipid bilayers and cellular membranes, we summarize strategies to mediate interactions between membranes and DNA nanostructures, with a focus on programmed delivery onto, into, and through lipid membranes. We also highlight emerging applications, including membrane sculpting, multicell self-assembly, spatial arrangement and organization of ligands and proteins, biomechanical sensing, synthetic DNA nanopores, biological imaging, and biomelecular sensing. Many critical but exciting challenges lie ahead, and we outline what strikes us as promising directions when translating DNA nanostructures for future in vitro and in vivo membrane applications.
机译:DNA纳米技术在探测和操纵生物环境中已经证明是特别的,因为它可以产生几乎任意形状的纳米结构,允许无数类型的修饰,同时具有固有的生物相容性。特别兴趣的紧急领域是涉及细胞膜的应用,但是为了充分探索可能性范围需要对DNA纳米技术,细胞和膜生物学的跨学科了解和生物物理学。在本次审查中,我们的目标是简明地介绍了这三个领域的交汇处。在简要重新审视DNA纳米技术之后,以及脂质双层和细胞膜的生物学和机械性能,总结了介导膜和DNA纳米结构之间的相互作用的策略,并将重点聚焦在编程到,进入和通过脂质膜。我们还突出了新兴应用,包括膜雕刻,多元组装,空间排列和配体和蛋白质组织,生物力学传感,合成DNA纳米孔,生物成像和生物调节感。许多关键但令人兴奋的挑战是未来的,我们概述了当在体外和体内膜应用中翻译DNA纳米结构时,我们将我们作为有希望的方向。

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