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基于葫芦[7]脲的可追踪病毒模拟四级复合物的构建及其聚集诱导发光用于高效基因转染。

Construction of traceable cucurbit[7]uril-based virus-mimicking quaternary complexes with aggregation-induced emission for efficient gene transfection.

机构信息

School of Material Science and Engineering, School of Chemistry and Chemical Engineering, Tianjin Key Laboratory of Drug Targeting and Bioimaging, Tianjin Enterprise Key Laboratory for Application Research of Hyaluronic Acid, Tianjin University of Technology, Tianjin 300384, P. R. China.

出版信息

J Mater Chem B. 2020 Aug 26;8(33):7475-7482. doi: 10.1039/d0tb01180k.

Abstract

Construction of an efficient cationic gene delivery system with low cytotoxicity, high transfection efficacy, as well as gene tracking function remains a major challenge in gene therapy. Fabrication of simple and reversible nanocomplexes based on host-guest interaction provides an opportunity to construct stimuli-responsive intelligent supramolecular systems. Inspired by the hierarchical structure of viruses, a novel virus-mimicking PG/CB/TPE/DNA gene delivery system is developed via a multistep noncovalent self-assembly process between pDNA and the preformed PG/CB/TPE complexes based on the host-guest interaction between cucurbit[7]uril (CB[7]) and the protonated diamine group in the poly(glycidyl methacrylate)s derivative (PG), as well as the electrostatic interaction between para-carboxyl functionalized tetraphenylethylene (TPE) and cationic PG. The developed efficient multifunctional gene delivery system exhibits stimuli responsive characteristics and aggregation-induced emission phenomena, thereby enabling gene delivery pH responsiveness and traceability. Moreover, the introduction of TPE and CB[7] endows the self-assembled PG/CB/TPE/DNA complexes with virus-mimicking architecture and properties such as low cytotoxicity, high stability, excellent endosomal escape, and efficient transfection, which are expected to be used as a promising gene delivery system.

摘要

构建一种高效的阳离子基因传递系统,具有低细胞毒性、高转染效率以及基因跟踪功能,仍然是基因治疗中的主要挑战。基于主客体相互作用的简单且可还原的纳米复合物的构建为构建刺激响应智能超分子系统提供了机会。受病毒的层次结构的启发,通过 pDNA 与预先形成的 PG/CB/TPE 复合物之间的多步非共价自组装过程,基于葫芦[7]脲(CB[7])与质子化二胺基团之间的主客体相互作用以及对羧基功能化四苯乙烯(TPE)与阳离子 PG 之间的静电相互作用,开发了一种新型的病毒模拟 PG/CB/TPE/TPE 基因传递系统。所开发的高效多功能基因传递系统表现出刺激响应特性和聚集诱导发射现象,从而实现基因传递 pH 响应性和可追踪性。此外,TPE 和 CB[7]的引入赋予自组装的 PG/CB/TPE/DNA 复合物以病毒模拟的结构和性质,例如低细胞毒性、高稳定性、出色的内涵体逃逸和高效转染,有望用作有前途的基因传递系统。

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