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Multilayered Polyelectrolyte Assemblies as Platforms for the Delivery of DNA and Other Nucleic Acid-Based Therapeutics

机译:多层聚电解质组件作为DNA和其他基于核酸的治疗药物传递的平台

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摘要

Materials that provide spatial and temporal control over the delivery of DNA and other nucleic acid-based agents from surfaces play important roles in the development of localized gene-based therapies. This review focuses on a relatively new approach to the immobilization and release of DNA from surfaces: methods based on the layer-by-layer assembly of thin multilayered films (or polyelectrolyte multilayers, PEMs). Layer-by-layer methods provide convenient, nanometer-scale control over the incorporation of DNA, RNA, and oligonucleotide constructs into thin polyelectrolyte films. Provided that these assemblies can be designed in ways that permit controlled film disassembly under physiological conditions, this approach can contribute new methods for spatial and/or temporal control over the delivery of nucleic acid-based therapeutics in vitro and in vivo. We describe applications of layer-by-layer assembly to the fabrication of DNA-containing films that can be used to provide control over the release of plasmid DNA from the surfaces of macroscopic objects and promote surface-mediated cell transfection. We also highlight the application of these methods to the coating of colloidal substrates and the fabrication of hollow micrometer-scale capsules that can be used to encapsulate and control the release or delivery of DNA and oligonucleotides. Current challenges, gaps in knowledge, and new opportunities for the development of these methods in the general area of gene delivery are discussed.
机译:提供对DNA和其他基于核酸的物质从表面递送进行时空控制的材料,在基于基因的局部疗法的发展中起着重要作用。这篇综述集中于从表面固定和释放DNA的相对较新的方法:基于多层薄膜(或聚电解质多层,PEM)的逐层组装的方法。逐层方法可为将DNA,RNA和寡核苷酸构建体掺入聚电解质薄膜中提供便利的纳米级控制。如果可以以允许在生理条件下进行受控的薄膜拆卸的方式设计这些组件,则该方法可以为在体外和体内对基于核酸的治疗剂的递送进行空间和/或时间控制提供新的方法。我们描述了分层组装在含DNA膜的制造中的应用,该膜可用于提供对宏观目标表面上质粒DNA释放的控制,并促进表面介导的细胞转染。我们还重点介绍了这些方法在胶体基质涂层和中空微米级胶囊制造中的应用,这些胶囊可用于封装和控制DNA和寡核苷酸的释放或传递。讨论了在基因传递的一般领域中这些方法的当前挑战,知识差距以及开发这些方法的新机会。

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