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基于蒽的内过氧化物作为用于缺氧肿瘤光动力疗法的自敏化单线态氧载体

Anthracene-Based Endoperoxides as Self-Sensitized Singlet Oxygen Carriers for Hypoxic-Tumor Photodynamic Therapy.

作者信息

He Yan-Qin, Tang Jian-Hong

机构信息

Institute of BioPharmaceutical Research, Liaocheng University, Liaocheng, 252059, P. R. China.

School of Future technology, University of Chinese Academy of Sciences (UCAS), Beijing, 101408, P. R. China.

出版信息

Adv Healthc Mater. 2025 Jan;14(2):e2403009. doi: 10.1002/adhm.202403009. Epub 2024 Nov 6.

DOI:10.1002/adhm.202403009
PMID:39506461
Abstract

Singlet oxygen is a crucial reactive oxygen species (ROS) in photodynamic therapy (PDT). However, the hypoxic tumor microenvironment limits the production of cytotoxic singlet oxygen through the light irradiation of PDT photosensitizers (PSs). This restriction poses a major challenge in improving the effectiveness of PDT. To overcome this challenge, researchers have explored the development of singlet oxygen carriers that can capture and release singlet oxygen in physiological conditions. Among these developments, anthracene-based endoperoxides, initially discovered almost 100 years ago, have shown the ability to generate singlet oxygen controllably under thermal or photo stimuli. Recent advancements have led to the development of a new class of self-sensitized anthracene-endoperoxides, with potential applications in enhancing PDT effects for hypoxic tumors. This review discusses the current research progress in utilizing self-sensitized anthracene-endoperoxides as singlet oxygen carriers for improved PDT. It covers anthracene-conjugated small organic molecules, metal-organic complexes, polymeric structures, and other self-sensitized nano-structures. The molecular structural designs, mechanisms, and characteristics of these systems will be discussed. This review aims to provide valuable insights for developing high-performance singlet oxygen carriers for hypoxic-tumor PDT.

摘要

单线态氧是光动力疗法(PDT)中一种关键的活性氧(ROS)。然而,缺氧的肿瘤微环境限制了通过PDT光敏剂(PSs)的光照射产生细胞毒性单线态氧。这种限制对提高PDT的有效性构成了重大挑战。为了克服这一挑战,研究人员探索了单线态氧载体的开发,这种载体能够在生理条件下捕获和释放单线态氧。在这些进展中,近100年前首次发现的基于蒽的内过氧化物已显示出在热或光刺激下可控地产生单线态氧的能力。最近的进展导致了一类新型的自敏化蒽内过氧化物的开发,其在增强缺氧肿瘤的PDT效果方面具有潜在应用。本综述讨论了利用自敏化蒽内过氧化物作为单线态氧载体以改善PDT的当前研究进展。它涵盖了蒽共轭的小有机分子、金属有机配合物、聚合物结构以及其他自敏化纳米结构。将讨论这些体系的分子结构设计、作用机制和特性。本综述旨在为开发用于缺氧肿瘤PDT的高性能单线态氧载体提供有价值的见解。

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