Nanomedicine strategies to counteract cancer stemness and chemoresistance.

Huayu Liu, Mingqi Liu, Yanan Zhao, Ran Mo
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Abstract

Cancer stem-like cells (CSCs) identified by self-renewal ability and tumor-initiating potential are responsible for tumor recurrence and metastasis in many cancers. Conventional chemotherapy fails to eradicate CSCs that hold a state of dormancy and possess multi-drug resistance. Spurred by the progress of nanotechnology for drug delivery and biomedical applications, nanomedicine has been increasingly developed to tackle stemness-associated chemotherapeutic resistance for cancer therapy. This review focuses on advances in nanomedicine-mediated therapeutic strategies to overcome chemoresistance by specifically targeting CSCs, the combination of chemotherapeutics with chemopotentiators, and programmable controlled drug release. Perspectives from materials and formulations at the nano-scales are specifically surveyed. Future opportunities and challenges are also discussed.

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对抗癌症干细胞和化疗耐药的纳米药物策略。
肿瘤干细胞(Cancer stem-样细胞,CSCs)具有自我更新能力和肿瘤启动潜能,在许多癌症中与肿瘤复发和转移有关。常规化疗无法根除处于休眠状态并具有多药耐药的CSCs。在纳米技术在药物传递和生物医学应用方面的进步的推动下,纳米医学已经越来越多地发展到解决癌症治疗中与干细胞相关的化疗耐药性。本文综述了纳米药物介导的治疗策略的进展,通过特异性靶向CSCs来克服化疗耐药,化疗药物与化学潜能剂的联合,以及可编程控制药物释放。从纳米尺度的材料和配方的角度进行了具体调查。并对未来的机遇和挑战进行了讨论。
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来源期刊
CiteScore
2.80
自引率
0.00%
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0
审稿时长
13 weeks
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