de la Fuente Ina F, Sawant Shraddha S, Tolentino Mark Q, Corrigan Patrick M, Rouge Jessica L
Department of Chemistry, University of Connecticut, Storrs, CT, United States.
Front Chem. 2021 Mar 10;9:613209. doi: 10.3389/fchem.2021.613209. eCollection 2021.
Therapeutic nucleic acids hold immense potential in combating undruggable, gene-based diseases owing to their high programmability and relative ease of synthesis. While the delivery of this class of therapeutics has successfully entered the clinical setting, extrahepatic targeting, endosomal escape efficiency, and subcellular localization. On the other hand, viruses serve as natural carriers of nucleic acids and have acquired a plethora of structures and mechanisms that confer remarkable transfection efficiency. Thus, understanding the structure and mechanism of viruses can guide the design of synthetic nucleic acid vectors. This review revisits relevant structural and mechanistic features of viruses as design considerations for efficient nucleic acid delivery systems. This article explores how viral ligand display and a metastable structure are central to the molecular mechanisms of attachment, entry, and viral genome release. For comparison, accounted for are details on the design and intracellular fate of existing nucleic acid carriers and nanostructures that share similar and essential features to viruses. The review, thus, highlights unifying themes of viruses and nucleic acid delivery systems such as genome protection, target specificity, and controlled release. Sophisticated viral mechanisms that are yet to be exploited in oligonucleotide delivery are also identified as they could further the development of next-generation nonviral nucleic acid vectors.
治疗性核酸因其高度的可编程性和相对易于合成,在对抗难以成药的基因疾病方面具有巨大潜力。虽然这类治疗药物的递送已成功进入临床阶段,但仍存在肝外靶向性、内体逃逸效率和亚细胞定位等问题。另一方面,病毒作为核酸的天然载体,具有众多能赋予显著转染效率的结构和机制。因此,了解病毒的结构和机制可指导合成核酸载体的设计。本综述重新审视病毒的相关结构和机制特征,将其作为高效核酸递送系统的设计考量因素。本文探讨了病毒配体展示和亚稳结构如何在病毒附着、进入及病毒基因组释放的分子机制中发挥核心作用。为作比较,还阐述了现有核酸载体和纳米结构的设计及细胞内命运细节,这些载体和纳米结构与病毒具有相似且关键的特征。因此,本综述突出了病毒与核酸递送系统的统一主题,如基因组保护、靶向特异性和控释。尚未在寡核苷酸递送中得到应用的复杂病毒机制也被识别出来,因为它们可能推动下一代非病毒核酸载体的发展。