| Literature DB >> 29898423 |
Fangyi Chen1, Yibin Zeng2, Xiaoxia Qi3, Yanchao Chen1, Zhe Ge1, Zengxin Jiang1, Xinchao Zhang1, Yinmei Dong4, Huaiwen Chen5, Zuochong Yu6.
Abstract
We previously developed salinomycin (sali)-entrapped nanoparticles labeled with CD133 aptamers which could efficiently eliminate CD133+ osteosarcoma cancer stem cells (CSCs). However, sufficient evidences suggest that the simultaneous targeting both CSCs and cancer cells is pivotal in achieving preferable cancer therapeutic efficacy, due to the spontaneous conversion between cancer cells and CSCs. We hereby constructed sali-entrapped lipid-polymer nanoparticles labeled with CD133 and EGFR aptamers (CESP) to target both osteosarcoma cells and CSCs. The cytotoxicity of CESP in osteosarcoma cells and CSCs was superior to that of single targeting or nontargeted sali-loaded nanoparticles. Administration of CESP in vivo showed the best efficacy in inhibiting tumor growth than other controls in osteosarcoma-bearing mice. Thus, CESP was demonstrated to be capable of efficiently targeting both osteosarcoma CSCs and cancer cells, and it represents an effective potential approach to treat osteosarcoma.Entities:
Keywords: CD133; Cancer stem cells; Dual targeting; EGFR; Osteosarcoma
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Year: 2018 PMID: 29898423 DOI: 10.1016/j.nano.2018.05.015
Source DB: PubMed Journal: Nanomedicine ISSN: 1549-9634 Impact factor: 5.307