豇豆花叶病毒纳米颗粒用于癌症成像和治疗。
Cowpea mosaic virus nanoparticles for cancer imaging and therapy.
机构信息
Department of Oncology, University of Alberta, Edmonton, Alberta T6G 2E1, Canada.
Department of Oncology, University of Alberta, Edmonton, Alberta T6G 2E1, Canada.
出版信息
Adv Drug Deliv Rev. 2019 May;145:130-144. doi: 10.1016/j.addr.2019.04.005. Epub 2019 Apr 17.
Nanoparticle platforms are particularly attractive for theranostic applications due to their capacity for multifunctionality and multivalency. Some of the most promising nano-scale scaffold systems have been co-opted from nature including plant viruses such as cowpea mosaic virus (CPMV). The use of plant viruses like CPMV as viral nanoparticles is advantageous for many reasons; they are non-infectious and nontoxic to humans and safe for use in intravital imaging and drug delivery. The CPMV capsid icosahedral shape allows for enhanced multifunctional group display and the ability to carry specific cargoes. The native tropism of CPMV for cell-surface displayed vimentin and the enhanced permeability and retention effect allow them to preferentially extravasate from tumor neovasculature and efficiently penetrate tumors. Furthermore, CPMVs can be engineered via several straightforward chemistries to display targeting and imaging moieties on external, addressable residues and they can be loaded internally with therapeutic drug cargoes. These qualities make them highly effective as biocompatible platforms for tumor targeting, intravital imaging and cancer therapy.
纳米颗粒平台因其多功能性和多价性而特别适用于治疗诊断应用。一些最有前途的纳米级支架系统是从自然界中获得的,包括植物病毒,如豇豆花叶病毒(CPMV)。由于多种原因,将类似 CPMV 的植物病毒用作病毒纳米颗粒是有利的;它们对人类无传染性且无毒,可安全用于活体成像和药物输送。CPMV 衣壳的二十面体形状允许增强多功能基团的显示和携带特定货物的能力。CPMV 对细胞表面展示的波形蛋白的天然趋向性以及增强的通透性和保留效应使它们能够优先从肿瘤新生血管中外渗,并有效地穿透肿瘤。此外,CPMV 可以通过几种简单的化学方法进行工程改造,在可寻址的外部残基上显示靶向和成像部分,并且可以在内部装载治疗性药物货物。这些特性使它们成为用于肿瘤靶向、活体成像和癌症治疗的高效生物相容平台。