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Improved Nucleic Acid Therapy with Advanced Nanoscale Biotechnology

机译:先进的纳米生物技术改善了核酸疗法

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摘要

Due to a series of systemic and intracellular obstacles in nucleic acid (NA) therapy, including fast degradation in blood, renal clearance, poor cellular uptake, and inefficient endosomal escape, NAs may need delivery methods to transport to the cell nucleus or cytosol to be effective. Advanced nanoscale biotechnology-associated strategies, such as controlling the particle size, charge, drug loading, response to environmental signals, or other physical/chemical properties of delivery carriers, have provided great help for the and delivery of NA therapeutics. In this review, we introduce the characteristics of different NA modalities and illustrate how advanced nanoscale biotechnology assists NA therapy. The specific features and challenges of various nanocarriers in clinical and preclinical studies are summarized and discussed. With the help of advanced nanoscale biotechnology, some of the major barriers to the development of NA therapy will eventually be overcome in the near future.
机译:由于核酸(NA)治疗中的一系列系统性和细胞内障碍,包括血液的快速降解,肾脏清除,不良的细胞摄取以及无效的内体逃逸,NAs可能需要通过转运方式转运到细胞核或胞质溶胶中。有效。先进的纳米级生物技术相关策略,例如控制粒径,电荷,药物载量,对环境信号的响应或输送载体的其他物理/化学性质,为NA治疗剂的输送和提供了极大的帮助。在这篇综述中,我们介绍了不同NA模式的特征,并说明了先进的纳米生物技术如何协助NA治疗。总结和讨论了各种纳米载体在临床和临床前研究中的特点和挑战。借助先进的纳米生物技术,在不久的将来,NA疗法发展的一些主要障碍将最终被克服。

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