Department of Pharmacy, Women and Children's Hospital of Chongqing Medical University, Chongqing Health Center for Women and Children, 401147, Chongqing, China.
Department of Pharmacy, Daping Hospital, Army Medical University, 400042, Chongqing, China.
Daru. 2023 Jun;31(1):83-94. doi: 10.1007/s40199-023-00456-0. Epub 2023 Mar 27.
Cancer stem cells (CSCs), a small subpopulation of cells with high tumorigenesis and strong intrinsic drug resistance, exhibit self-renewal and differentiation abilities. CSCs play a crucial role in tumor progression, drug resistance, recurrence and metastasis,and conventional therapy is not enough to eradicate them. Therefore, developing novel therapies targeting CSCs to increase drug sensitivity and preventing relapse is essential. The objective of this review is to present nanotherapies that target and eradicate the tumor "seeds".
Evidence was collected and sorted from the literature ranging from 2000 to 2022, using appropriate keywords and key phrases as search terms within scientific databases such as Web of Science, PubMed and Google Scholar.
Nanoparticle drug delivery systems have been successfully applied to gain longer circulation time, more precise targeting capability and better stability during cancer treatment. Nanotechnology-based strategies that have been used to target CSCs, include (1) encapsulating small molecular drugs and genes by nanotechnology, (2) targeting CSC signaling pathways, (3) utilizing nanocarriers targeting for specific markers of CSCs, (4) improving photothermal/ photodynamic therapy (PTT/PDT), 5)targeting the metabolism of CSCs and 6) enhancing nanomedicine-aided immunotherapy.
This review summarizes the biological hallmarks and markers of CSCs, and the nanotechnology-based therapies to kill them. Nanoparticle drug delivery systems are appropriate means for delivering drugs to tumors through enhanced permeability and retention (EPR) effect. Furthermore, surface modification with special ligands or antibodies improves the recognition and uptake of tumor cells or CSCs. It is expected that this review can offer insights into features of CSCs and the exploration of targeting nanodrug delivery systems.
癌症干细胞(CSCs)是一群具有高致瘤性和强内在耐药性的细胞亚群,具有自我更新和分化能力。CSCs 在肿瘤进展、耐药性、复发和转移中起着关键作用,常规治疗不足以消灭它们。因此,开发针对 CSCs 的新型疗法以提高药物敏感性并预防复发至关重要。本综述的目的是介绍针对肿瘤“种子”的靶向和根除疗法。
使用科学数据库(如 Web of Science、PubMed 和 Google Scholar)中的适当关键字和关键短语作为搜索词,从 2000 年至 2022 年的文献中收集和分类证据。
纳米药物递送系统已成功应用于癌症治疗,以获得更长的循环时间、更精确的靶向能力和更好的稳定性。用于靶向 CSCs 的基于纳米技术的策略包括:(1)通过纳米技术封装小分子药物和基因;(2)靶向 CSC 信号通路;(3)利用针对 CSCs 特异性标志物的纳米载体靶向;(4)改善光热/光动力治疗(PTT/PDT);(5)靶向 CSCs 的代谢;(6)增强纳米医学辅助免疫疗法。
本综述总结了 CSCs 的生物学特征和标志物,以及基于纳米技术的杀死它们的疗法。纳米药物递送系统是通过增强渗透性和保留(EPR)效应将药物递送到肿瘤的合适手段。此外,通过特殊配体或抗体进行表面修饰可提高肿瘤细胞或 CSCs 的识别和摄取。预计本综述能为 CSCs 的特征和靶向纳米药物递送系统的探索提供一些思路。