Applications of Lipidic and Polymeric Nanoparticles for siRNA Delivery

Behiye Şenel, G. Büyükköroğlu
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引用次数: 2

Abstract

The antisense technology that emerged with the discovery of RNA interference nearly 20 years ago has gained a significant place in gene therapy. siRNA, one of two important components of RNA interference, efficiently downregulates gene expression in human cells, so it has the potential to eradicate disease. siRNA delivery systems, which can be applied both systemically and locally in different diseases, have gained significant importance. Naked small RNAs can be delivered directly to cells, but because of their instability, exposure to enzyme degradation, and difficulties in reaching/entering the target cell or tissue in blood stream, these initiatives are failing. For this reason, the method of delivery or encapsulation of siRNA is usually required. Various nanoparticles, nanocapsules, emulsions, micelle systems, metal ion nanoparticles, and nanoconjugates have been used for siRNA delivery. In these transport systems, lipidic and polymeric systems are very attractive due to their advantages such as being biodegradable and biocompatible, safety, being able to electrostatically bind to RNA, long-term stability, well-illuminated structure and features, simple and easy production, etc. Issues such as particle size, zeta potential, and stability of siRNA-loaded system should be taken into consideration in the development of siRNA delivery systems.
脂质和聚合纳米颗粒在siRNA传递中的应用
近20年前随着RNA干扰的发现而出现的反义技术在基因治疗中获得了重要的地位。siRNA是RNA干扰的两个重要组成部分之一,它能有效地下调人类细胞中的基因表达,因此具有根除疾病的潜力。siRNA递送系统可以系统和局部应用于不同的疾病,因此具有重要意义。裸小rna可以直接递送到细胞中,但由于其不稳定性,暴露于酶降解,以及难以到达/进入血流中的目标细胞或组织,这些举措正在失败。因此,通常需要siRNA的递送或封装方法。各种纳米颗粒、纳米胶囊、乳液、胶束系统、金属离子纳米颗粒和纳米缀合物已被用于siRNA的递送。在这些转运系统中,脂质和聚合物体系因其可生物降解和生物相容性、安全性、能与RNA静电结合、长期稳定性、结构和特性清晰、简单易制作等优点而备受关注。在siRNA递送系统的开发中,应考虑到siRNA负载系统的粒径、zeta电位和稳定性等问题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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