提高光动力疗法的精确性:光驱动和生物正交激活技术的创新

N. Kuzmina, Ekaterina A. Fedotova, Petar Jankovic, Galina P. Gribova, A. Nyuchev, Alexey Yu. Fedorov, Vasilii F. Otvagin
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摘要

过去几十年来,光动力疗法(PDT)已发展成为一种微创治疗方式,可精确控制癌症和其他各种疾病。为了应对与光动力疗法相关的固有挑战,研究人员一直在探索两条大有可为的途径:开发通过光诱导的能量转移、电荷或电子转移激活的智能光敏剂,以及破坏光敏键。此外,人们越来越重视光敏剂在肿瘤内的生物正交传递或激活,从而实现这些智能光敏系统在特定组织内的定向部署和激活,从而达到高度精确的光导治疗。这篇简明综述重点介绍了过去十年中光激活或生物正交光敏剂领域取得的进展,比较了它们的疗效,并为光动力疗法的未来发展指明了方向。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Enhancing Precision in Photodynamic Therapy: Innovations in Light-Driven and Bioorthogonal Activation
Over the past few decades, photodynamic therapy (PDT) has evolved as a minimally invasive treatment modality offering precise control over cancer and various other diseases. To address inherent challenges associated with PDT, researchers have been exploring two promising avenues: the development of intelligent photosensitizers activated through light-induced energy transfers, charges, or electron transfers, and the disruption of photosensitive bonds. Moreover, there is a growing emphasis on the bioorthogonal delivery or activation of photosensitizers within tumors, enabling targeted deployment and activation of these intelligent photosensitive systems in specific tissues, thus achieving highly precise PDT. This concise review highlights advancements made over the last decade in the realm of light-activated or bioorthogonal photosensitizers, comparing their efficacy and shaping future directions in the advancement of photodynamic therapy.
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