点击化学
体内
化学
纳米颗粒
受体
生物物理学
生物化学
组合化学
纳米技术
生物
材料科学
生物技术
作者
Sangmin Lee,Heebeom Koo,Jin Hee Na,Seung Jin Han,Hyun Su Min,So Jin Lee,Sun Hwa Kim,Seok‐Hyun Yun,Seo Young Jeong,Ick Chan Kwon,Kuiwon Choi,Kwangmeyung Kim
出处
期刊:ACS Nano
[American Chemical Society]
日期:2014-02-05
卷期号:8 (3): 2048-2063
被引量:203
摘要
Tumor-targeting strategies for nanoparticles have been predominantly based on optimization of physical properties or conjugation with biological ligands. However, their tumor-targeting abilities remain limited and insufficient. Furthermore, traditional biological binding molecules have intrinsic limitations originating from the limited amount of cellular receptors and the heterogeneity of tumor cells. Our two-step in vivo tumor-targeting strategy for nanoparticles is based on metabolic glycoengineering and click chemistry. First, an intravenous injection of precursor-loaded glycol chitosan nanoparticles generates azide groups on tumor tissue specifically by the enhanced permeation and retention (EPR) effect followed by metabolic glycoengineering. These 'receptor-like' chemical groups then enhance the tumor-targeting ability of drug-containing nanoparticles by copper-free click chemistry in vivo during a second intravenous injection. The advantage of this protocol over traditional binding molecules is that there are significantly more binding molecules on the surface of most tumor cells regardless of cell type. The subsequent enhanced tumor-targeting ability can significantly enhance the cancer therapeutic efficacy in animal studies.
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