纳米颗粒在 siRNA 递送至癌症治疗中的意义和应用。
Significance and applications of nanoparticles in siRNA delivery for cancer therapy.
机构信息
UMR CNRS 8203, Institut Gustave Roussy, 114 rue Edouard Vaillant, 94805 Villejuif, France.
出版信息
Expert Rev Clin Pharmacol. 2012 Jul;5(4):403-12. doi: 10.1586/ecp.12.33.
RNAi is a powerful gene silencing process that holds great promise in cancer therapy by the use of siRNA. The aim of this review is to give an outline on different approaches to deliver siRNA and to describe the advantages and disadvantages of these systems. The prospects for siRNA are to be substantially better than other therapies, as they are easily applicable to any therapeutic target. They also promise potent gene inhibition with exquisite selectivity, down to the level of a single nucleotide polymorphism, and can easily identify offending proteins or variants by screening across a gene sequence. The main obstacle of using RNAi technology in cancer treatment is to protect such a fragile and quickly metabolized biological molecule and to efficiently deliver it in vivo to the target cells. Therefore, there is a requirement for new systems, such as nanoparticles, for siRNA delivery to help the siRNAs reach, and improve their biodistribution in, target tissues.
RNAi 是一种强大的基因沉默过程,通过使用 siRNA 在癌症治疗中有很大的应用前景。本文的目的是概述不同的 siRNA 递呈方法,并描述这些系统的优缺点。siRNA 的前景将大大优于其他疗法,因为它们很容易适用于任何治疗靶点。它们还可以通过在基因序列上进行筛选,对单个核苷酸多态性水平进行精确的基因抑制,并且可以轻松识别出致病蛋白或变体。在癌症治疗中使用 RNAi 技术的主要障碍是保护这种脆弱且快速代谢的生物分子,并将其有效地递送到体内的靶细胞。因此,需要新的系统,如纳米粒子,来帮助 siRNA 递送到靶组织,并改善其在靶组织中的分布。