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Updated: Aug 14, 2026

Photodynamic Therapy with Blended Conducting Polymer/Fullerene Nanoparticle Photosensitizers
Published on: October 28, 2015
Integrating perfluorocarbon and type-I photosensitizer into a single molecule: a phenothiazine-based platform for
Ziqi Zou1,2, Meiying Liu2,3, Kun Zhang1,2
1Orthopedic Hospital, The First Affiliated Hospital, Jiangxi Medical College, Nanchang University No. 17 Yong Wai Zheng Street Nanchang Jiangxi 330006 China kuangzhihui@email.ncu.edu.cn.
Abstract:
Hypoxia-induced resistance remains a major obstacle in photodynamic therapy (PDT) due to the oxygen dependency of conventional type-II photosensitizers. To tackle this issue, we developed a phenothiazine-based small molecule (PFI) that integrates intrinsic oxygen-carrying perfluoroalkyl chains with type-I photodynamic functionality. The perfluorinated segments enable localized oxygen enrichment to counteract tumor hypoxia, while the phenothiazine core generates reactive oxygen species (ROS) via an oxygen-independent type-I pathway, sustaining phototoxicity even under low-oxygen environments. Both in vitro and in vivo studies confirm that PFI effectively accumulates in tumors, relieves hypoxia, and achieves potent antitumor efficacy with negligible side effects. This single-component design offers a facile and robust platform for hypoxia-tolerant photodynamic cancer therapy.
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