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有机/无机纳米杂化材料作为多功能基因传递系统。

Organic/inorganic nanohybrids as multifunctional gene delivery systems.

机构信息

State Key Laboratory of Chemical Resource Engineering, Beijing University of Chemical Technology, Beijing, China.

Key Lab of Biomedical Materials of Natural Macromolecules (Beijing University of Chemical Technology), Ministry of Education, Beijing Laboratory of Biomedical Materials, Beijing Advanced Innovation Center for Soft Matter Science and Engineering, Beijing University of Chemical Technology, Beijing, China.

出版信息

J Gene Med. 2019 May;21(5):e3084. doi: 10.1002/jgm.3084. Epub 2019 Apr 2.

Abstract

In this review, we summarize the rational design and versatile application of organic/inorganic hybrid gene carriers as multifunctional delivery systems. Organic/inorganic nanohybrids with both organic and inorganic components in one nanoparticle have attracted intense attention because of their favorable properties. Particularly, nanohybrids comprising cationic polymers and inorganic nanoparticles are considered to be promising candidates as multifunctional gene delivery systems. In this review, we begin with an introduction of gene delivery and gene carriers to demonstrate the incentive for fabricating nanohybrids as multifunctional carriers. Next, the construction strategies and morphology effects of organic/inorganic hybrid gene carriers are summarized and discussed. Both sections provide valuable information for the design and synthesis of hybrid gene carriers with superior properties. Finally, an overview is provided of the application of nanohybrids as multifunctional gene carriers. Diverse therapies and versatile imaging-guided therapies have been achieved via the rational design of nanohybrids. In addition to a simple combination of the functions of organic and inorganic components, the performances arising from the synergistic effects of both components are considered to be more intriguing. In summary, this review might offer guidance for the understanding of organic/inorganic nanohybrids as multifunctional gene delivery systems.

摘要

在这篇综述中,我们总结了有机/无机杂化基因载体作为多功能递药系统的合理设计和广泛应用。由于具有优良的性能,同时包含有机和无机成分的有机/无机纳米杂化材料受到了强烈关注。特别是,由阳离子聚合物和无机纳米粒子组成的纳米杂化物被认为是多功能基因传递系统的有前途的候选物。在这篇综述中,我们首先介绍了基因传递和基因载体,以证明构建纳米杂化物作为多功能载体的动机。接下来,总结并讨论了有机/无机杂化基因载体的构建策略和形态效应。这两个部分都为设计和合成具有优异性能的杂化基因载体提供了有价值的信息。最后,概述了纳米杂化物作为多功能基因载体的应用。通过合理设计纳米杂化物,可以实现多种治疗方法和多种成像引导治疗。除了有机和无机成分的功能简单组合外,还考虑了两者协同作用所产生的性能更具吸引力。总之,本综述可能为理解有机/无机纳米杂化物作为多功能基因传递系统提供指导。

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