| Literature DB >> 24127723 |
Zhong Luo1, Xingwei Ding, Yan Hu, Shaojue Wu, Yang Xiang, Yongfei Zeng, Beilu Zhang, Hong Yan, Huacheng Zhang, Liangliang Zhu, Junjie Liu, Jinghua Li, Kaiyong Cai, Yanli Zhao.
Abstract
In order to selectively target malignant cells and eliminate severe side effects of conventional chemotherapy, biocompatible and redox-responsive hollow nanocontainers with tumor specificity were fabricated. The mechanized nanocontainers were achieved by anchoring mechanically interlocked molecules, i.e., [2]rotaxanes, onto the orifices of hollow mesoporous silica nanoparticles via disulfide bonds as intermediate linkers for intracellular glutathione-triggered drug release. The [2]rotaxane employed was mainly composed of U.S. Food and Drug Administration approved tetraethylene glycol chains, α-cyclodextrin, and folic acid. In this study, folate groups on the mechanized hollow nanocontainers act as both the tumor-targeting agents and stoppers of the [2]rotaxanes. Detailed investigations showed that anticancer drug doxorubicin loaded mechanized nanocontainers could selectively induce the apoptosis and death of tumor cells. The drug-loaded nanocontainers enhanced the targeting capability to tumor tissues in vitro and inhibited the tumor growth with minimal side effects in vivo. The present controlled and targeted drug delivery system paves the way for developing the next generation of nanotherapeutics toward efficient cancer treatment.Entities:
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Year: 2013 PMID: 24127723 DOI: 10.1021/nn404676w
Source DB: PubMed Journal: ACS Nano ISSN: 1936-0851 Impact factor: 15.881