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Nanocoating for biomolecule delivery using layer-by-layer self-assembly

机译:使用逐层自组装的生物分子递送纳米涂层

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摘要

Since its introduction in the early 1990s, layer-by-layer (LbL) self-assembly of films has been widely used in the fields of nanoelectronics, optics, sensors, surface coatings, and controlled drug delivery. The growth of this industry is propelled by the ease of film manufacture, low cost, mild assembly conditions, precise control of coating thickness, and versatility of coating materials. Despite the wealth of research on LbL for biomolecule delivery, clinical translation has been limited and slow. This review provides an overview of methods and mechanisms of loading biomolecules within LbL films and achieving controlled release. In particular, this review highlights recent advances in the development of LbL coatings for the delivery of different types of biomolecules including proteins, polypeptides, DNA, particles and viruses. To address the need for co-delivery of multiple types of biomolecules at different timing, we also review recent advances in incorporating compartmentalization into LbL assembly. Existing obstacles to clinical translation of LbL technologies and enabling technologies for future directions are also discussed.
机译:自1990年代初推出以来,薄膜的逐层(LbL)自组装已广泛用于纳米电子,光学,传感器,表面涂层和可控药物输送领域。薄膜制造的简便性,低成本,组装条件温和,涂层厚度的精确控制以及涂层材料的多功能性推动了该行业的发展。尽管对用于生物分子递送的LbL进行了大量研究,但是临床翻译仍然有限且缓慢。这篇综述概述了在LbL膜中装载生物分子并实现控释的方法和机理。特别地,该综述突出了用于递送不同类型的生物分子(包括蛋白质,多肽,DNA,颗粒和病毒)的LbL涂层开发的最新进展。为了满足在不同时机共同交付多种类型生物分子的需求,我们还回顾了将区室化纳入LbL组装的最新进展。还讨论了LbL技术临床翻译的现有障碍以及为未来发展提供支持的技术。

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