体内
硫普罗宁
球体
纳米颗粒
胶体金
材料科学
离体
生物物理学
癌细胞
纳米技术
化学
体外
渗透(战争)
癌症
生物
生物化学
遗传学
生物技术
运筹学
工程类
药理学
作者
Keyang Huang,Huili Ma,Juan Liu,Shuaidong Huo,Anil Kumar,Tuo Wei,Xu Zhang,Shubin Jin,Yulin Gan,Paul Wang,Shengtai He,Xiaoning Zhang,Xing‐Jie Liang
出处
期刊:ACS Nano
[American Chemical Society]
日期:2012-05-04
卷期号:6 (5): 4483-4493
被引量:726
摘要
This work demonstrated that ultrasmall gold nanoparticles (AuNPs) smaller than 10 nm display unique advantages over nanoparticles larger than 10 nm in terms of localization to, and penetration of, breast cancer cells, multicellular tumor spheroids, and tumors in mice. Au@tiopronin nanoparticles that have tunable sizes from 2 to 15 nm with identical surface coatings of tiopronin and charge were successfully prepared. For monolayer cells, the smaller the Au@tiopronin NPs, the more AuNPs found in each cell. In addition, the accumulation of Au NPs in the ex vivo tumor model was size-dependent: smaller AuNPs were able to penetrate deeply into tumor spheroids, whereas 15 nm nanoparticles were not. Owing to their ultrasmall nanostructure, 2 and 6 nm nanoparticles showed high levels of accumulation in tumor tissue in mice after a single intravenous injection. Surprisingly, both 2 and 6 nm Au@tiopronin nanoparticles were distributed throughout the cytoplasm and nucleus of cancer cells in vitro and in vivo, whereas 15 nm Au@tiopronin nanoparticles were found only in the cytoplasm, where they formed aggregates. The ex vivo multicellular spheroid proved to be a good model to simulate in vivo tumor tissue and evaluate nanoparticle penetration behavior. This work gives important insights into the design and functionalization of nanoparticles to achieve high levels of accumulation in tumors.
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