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肿瘤乏氧相关纳米医学的研究进展。

Research progress on tumor hypoxia-associative nanomedicine.

机构信息

School of Chemistry, Chemical Engineering & Life Science, Wuhan University of Technology, No. 122 Luoshi Road, Wuhan 430070, PR China.

School of Chemistry, Chemical Engineering & Life Science, Wuhan University of Technology, No. 122 Luoshi Road, Wuhan 430070, PR China.

出版信息

J Control Release. 2022 Oct;350:829-840. doi: 10.1016/j.jconrel.2022.09.003. Epub 2022 Sep 13.

Abstract

Hypoxia at the solid tumor site is generally related to the unrestricted proliferation and metabolism of cancerous cells, which can cause tumor metastasis and aggravate tumor progression. Besides, hypoxia plays a substantial role in tumor treatment, and it is one of the main reasons that malignant tumors are difficult to cure and have a poor prognosis. On account of the tumor specific hypoxic environment, many hypoxia-associative nanomedicine have been proposed for tumor treatment. Considering the enhanced targeting effect, designing hypoxia-associative nanomedicine can not only minimize the adverse effects of drugs on normal tissues, but also achieve targeted therapy at the lesion site. Mostly, there can be three strategies for the treatment of hypoxic tumor, including improvement of hypoxic environment, hypoxia responsive drug release and hypoxia activated prodrug. The review describes the design principle and applications of tumor hypoxia-associative nanomedicine in recent years, and also explores its development trends in solid tumor treatment. Moreover, this review presents the current limitations of tumor hypoxia-associative nanomedicine in chemotherapy, radiotherapy, photodynamic therapy, sonodynamic therapy and immunotherapy, which may provide a reference for clinic translation of tumor hypoxia-associative nanomedicine.

摘要

肿瘤部位的缺氧通常与癌细胞的不受控制的增殖和代谢有关,这可能导致肿瘤转移并加重肿瘤的进展。此外,缺氧在肿瘤治疗中起着重要作用,这也是恶性肿瘤难以治愈且预后不良的主要原因之一。鉴于肿瘤特定的缺氧环境,已经提出了许多与缺氧相关的纳米医学用于肿瘤治疗。考虑到增强的靶向效果,设计与缺氧相关的纳米医学不仅可以最小化药物对正常组织的不良影响,还可以在病变部位实现靶向治疗。治疗缺氧肿瘤通常有三种策略,包括改善缺氧环境、缺氧响应药物释放和缺氧激活前药。本文综述了近年来肿瘤缺氧相关纳米医学的设计原理和应用,并探讨了其在实体瘤治疗中的发展趋势。此外,本文还介绍了肿瘤缺氧相关纳米医学在化学疗法、放射疗法、光动力疗法、声动力疗法和免疫疗法中的当前局限性,这可能为肿瘤缺氧相关纳米医学的临床转化提供参考。

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