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核酸递送的合成方法:选择合适的载体。

Synthetic Approaches for Nucleic Acid Delivery: Choosing the Right Carriers.

作者信息

Ni Rong, Feng Ruilu, Chau Ying

机构信息

Department of Chemical and Biological Engineering, the Hong Kong University of Science and Technology, Clear Water Bay, Kowloon, Hong Kong 999077, China.

Institute for Advanced Study, the Hong Kong University of Science and Technology, Clear Water Bay, Kowloon, Hong Kong 999077, China.

出版信息

Life (Basel). 2019 Jul 9;9(3):59. doi: 10.3390/life9030059.

Abstract

The discovery of the genetic roots of various human diseases has motivated the exploration of different exogenous nucleic acids as therapeutic agents to treat these genetic disorders (inherited or acquired). However, the physicochemical properties of nucleic acids render them liable to degradation and also restrict their cellular entrance and gene translation/inhibition at the correct cellular location. Therefore, gene condensation/protection and guided intracellular trafficking are necessary for exogenous nucleic acids to function inside cells. Diversified cationic formulation materials, including natural and synthetic lipids, polymers, and proteins/peptides, have been developed to facilitate the intracellular transportation of exogenous nucleic acids. The chemical properties of different formulation materials determine their special features for nucleic acid delivery, so understanding the property-function correlation of the formulation materials will inspire the development of next-generation gene delivery carriers. Therefore, in this review, we focus on the chemical properties of different types of formulation materials and discuss how these formulation materials function as protectors and cellular pathfinders for nucleic acids, bringing them to their destination by overcoming different cellular barriers.

摘要

各种人类疾病遗传根源的发现激发了人们对不同外源核酸作为治疗剂治疗这些遗传疾病(遗传性或获得性)的探索。然而,核酸的物理化学性质使其易于降解,并且还限制了它们进入细胞以及在正确的细胞位置进行基因翻译/抑制。因此,基因浓缩/保护和引导细胞内运输对于外源核酸在细胞内发挥功能是必要的。已经开发出多种阳离子制剂材料,包括天然和合成脂质、聚合物以及蛋白质/肽,以促进外源核酸的细胞内运输。不同制剂材料的化学性质决定了它们在核酸递送方面的特殊特性,因此了解制剂材料的性质-功能相关性将推动下一代基因递送载体的开发。因此,在本综述中,我们专注于不同类型制剂材料的化学性质,并讨论这些制剂材料如何作为核酸的保护剂和细胞导航器发挥作用,通过克服不同的细胞屏障将它们送达目的地。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9857/6789897/a4a928144a1a/life-09-00059-g001.jpg

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