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Nanoparticle-Mediated Systemic Delivery of siRNA for Treatment of Cancers and Viral Infections

机译:纳米粒子介导的siRNA全身递送用于治疗癌症和病毒感染。

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摘要

RNA interference (RNAi) is an endogenous post-transcriptional gene regulatory mechanism, where non-coding, double-stranded RNA molecules interfere with the expression of certain genes in order to silence it. Since its discovery, this phenomenon has evolved as powerful technology to diagnose and treat diseases at cellular and molecular levels. With a lot of attention, short interfering RNA (siRNA) therapeutics has brought a great hope for treatment of various undruggable diseases, including genetic diseases, cancer, and resistant viral infections. However, the challenge of their systemic delivery and on how they are integrated to exhibit the desired properties and functions remains a key bottleneck for realizing its full potential. Nanoparticles are currently well known to exhibit a number of unique properties that could be strategically tailored into new advanced siRNA delivery systems. This review summarizes the various nanoparticulate systems developed so far in the literature for systemic delivery of siRNA, which include silica and silicon-based nanoparticles, metal and metal oxides nanoparticles, carbon nanotubes, graphene, dendrimers, polymers, cyclodextrins, lipids, hydrogels, and semiconductor nanocrystals. Challenges and barriers to the delivery of siRNA and the role of different nanoparticles to surmount these challenges are also included in the review.
机译:RNA干扰(RNAi)是一种内源的转录后基因调节机制,其中非编码双链RNA分子干扰某些基因的表达以使其沉默。自发现以来,这种现象已发展成为在细胞和分子水平上诊断和治疗疾病的强大技术。短时干扰RNA(siRNA)疗法引起了广泛的关注,为治疗各种不可药物的疾病(包括遗传性疾病,癌症和耐药性病毒感染)带来了巨大希望。然而,它们的系统递送以及如何将它们整合以展现出所需的特性和功能所面临的挑战仍然是实现其全部潜力的关键瓶颈。目前众所周知,纳米粒子具有许多独特的特性,可以从战略上将它们定制成新的先进siRNA递送系统。这篇综述总结了迄今为止为系统递送siRNA而开发的各种纳米颗粒系统,包括基于二氧化硅和硅的纳米颗粒,金属和金属氧化物纳米颗粒,碳纳米管,石墨烯,树枝状聚合物,聚合物,环糊精,脂质,水凝胶和半导体纳米晶体。 siRNA传递的挑战和障碍以及不同纳米颗粒克服这些挑战的作用也包括在本综述中。

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