Instituto de Ciencia de Materiales de Aragón (ICMA), Consejo Superior de Investigaciones Científicas (CSIC)-Universidad de Zaragoza and CIBER-BBN, C/Pedro Cerbuna 12, 50009 Zaragoza, Spain.
J Mater Chem B. 2019 Feb 14;7(6):876-896. doi: 10.1039/c8tb02484g. Epub 2019 Jan 18.
Discovering the vast therapeutic potential of siRNA opened up new clinical research areas focussing on a number of diseases and applications; however significant problems with siRNA stability and delivery have hindered its clinical applicability. As a result, interest in the development of practical siRNA delivery systems has grown in recent years. Of the numerous siRNA delivery strategies currently on offer, gold nanoparticles (AuNPs) stand out thanks to their biocompatibility and capacity to protect siRNA against degradation; not to mention the versatility offered by their tuneable shape, size and optical properties. Herein this review provides a complete summary of the methodologies for functionalizing AuNPs with siRNA, paying singular attention to the AuNP shape, size and surface coating, since these key factors heavily influence cellular interaction, internalization and, ultimately, the efficacy of the hybrid particle. The most noteworthy hybridization strategies have been highlighted along with the most innovative and outstanding in vivo studies with a view to increasing clinical interest in the use of AuNPs as siRNA nanocarriers.
发现 siRNA 的巨大治疗潜力开辟了新的临床研究领域,专注于许多疾病和应用;然而,siRNA 的稳定性和递送的显著问题阻碍了其临床应用。因此,近年来人们对开发实用的 siRNA 递送系统的兴趣日益浓厚。在目前提供的众多 siRNA 递送策略中,金纳米粒子 (AuNPs) 因其生物相容性和保护 siRNA 免受降解的能力而脱颖而出;更不用说它们可调形状、尺寸和光学特性所提供的多功能性了。本文全面总结了用 siRNA 功能化 AuNPs 的方法,特别关注 AuNP 的形状、尺寸和表面涂层,因为这些关键因素严重影响细胞相互作用、内化,最终影响杂交颗粒的功效。本文突出了最值得注意的杂交策略以及最具创新性和最杰出的体内研究,以期增加人们对将 AuNPs 用作 siRNA 纳米载体的临床兴趣。