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肿瘤微环境重编程策略在激活光敏剂介导的光动力疗法中的最新进展。

Recent Advances in Reprogramming Strategy of Tumor Microenvironment for Rejuvenating Photosensitizers-Mediated Photodynamic Therapy.

机构信息

School of Pharmaceutical Science and Technology, Tianjin University, Tianjin, 300072, P. R. China.

National Resource Center for Chinese Materia Medica, Chinese Academy of Chinese Medical Sciences, Beijing, 100700, China.

出版信息

Small. 2024 Apr;20(16):e2305708. doi: 10.1002/smll.202305708. Epub 2023 Nov 28.

Abstract

Photodynamic therapy (PDT) has recently been considered a potential tumor therapy due to its time-space specificity and non-invasive advantages. PDT can not only directly kill tumor cells by using cytotoxic reactive oxygen species but also induce an anti-tumor immune response by causing immunogenic cell death of tumor cells. Although it exhibits a promising prospect in treating tumors, there are still many problems to be solved in its practical application. Tumor hypoxia and immunosuppressive microenvironment seriously affect the efficacy of PDT. The hypoxic and immunosuppressive microenvironment is mainly due to the abnormal vascular matrix around the tumor, its abnormal metabolism, and the influence of various immunosuppressive-related cells and their expressed molecules. Thus, reprogramming the tumor microenvironment (TME) is of great significance for rejuvenating PDT. This article reviews the latest strategies for rejuvenating PDT, from regulating tumor vascular matrix, interfering with tumor cell metabolism, and reprogramming immunosuppressive related cells and factors to reverse tumor hypoxia and immunosuppressive microenvironment. These strategies provide valuable information for a better understanding of the significance of TME in PDT and also guide the development of the next-generation multifunctional nanoplatforms for PDT.

摘要

光动力疗法(PDT)由于其时空特异性和非侵入性优势,最近被认为是一种有潜力的肿瘤治疗方法。PDT 不仅可以通过使用细胞毒性活性氧直接杀死肿瘤细胞,还可以通过诱导肿瘤细胞的免疫原性细胞死亡来引发抗肿瘤免疫反应。尽管它在治疗肿瘤方面表现出了广阔的前景,但在实际应用中仍有许多问题需要解决。肿瘤缺氧和免疫抑制微环境严重影响 PDT 的疗效。缺氧和免疫抑制微环境主要是由于肿瘤周围异常的血管基质、其异常代谢以及各种免疫抑制相关细胞及其表达分子的影响。因此,重新编程肿瘤微环境(TME)对于恢复 PDT 具有重要意义。本文综述了最新的恢复 PDT 的策略,包括调节肿瘤血管基质、干扰肿瘤细胞代谢以及重新编程免疫抑制相关细胞和因子以逆转肿瘤缺氧和免疫抑制微环境。这些策略为更好地理解 TME 在 PDT 中的意义提供了有价值的信息,并指导了下一代用于 PDT 的多功能纳米平台的发展。

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