A Novel Polymer Enabled by Polymerized Small Molecule Strategy for Tumor Photothermal and Photodynamic Therapy

Author:

Xie Xin1,Wang Ke2,Zeng Jie1,Xu Miao-Yan1,Qu Xin-Hui3,Xiang Zheng-Bin3,Tou Fang-Fang4,Huang Shaorong3,Han Xiao-Jian5

Affiliation:

1. Nanchang University

2. Jiangxi Provincial Children’s Hospital

3. Jiangxi Provincial People’s Hospital, the First Affiliated Hospital of Nanchang Medical College

4. the First Affiliated Hospital of Nanchang Medical College

5. Jiangxi Provincial People's Hospital & The First Affiliated Hospital of Nanchang Medical College

Abstract

Abstract Photothermal therapy (PTT) and photodynamic therapy (PDT) are effective method for tumor treatment. However, the limited variety and quantity of photothermal agents (PTAs) and photosensitizer (PSs) are still major challenges. Moreover, the cell apoptosis mechanism induced by PDT and PTT is still elusive. A fused-ring small molecule acceptor-donor acceptor′ donor-acceptor (A-DA′D-A) type of Y5 (Scheme 1) has a narrow band-gap and strong light absorption. Herein, we used Y5 to polymerize with thiophene unit to obtain polymer PYT based on polymerized small molecule strategy, and PYT nanoparticles (PYT NPs) was prepared via one-step nanoprecipitation strategy with DSPE-PEG2000. PYT NPs had excellent biocompatibility, good photostability, high photothermal conversion efficiency (67%) and reactive oxygen species (ROS) production capacity under 808 nm laser irradiation (PYT NPs + NIR). In intro and in vivo experiments revealed that PYT NPs + NIR had the ability to completely ablate tumor cells. It was demonstrated that cell apoptosis induced by PYT NPs + NIR was closely related to mitochondrial damage. This study provides valuable guidance for constructing high-performance organic PTAs and PSs for tumor treatment.

Publisher

Research Square Platform LLC

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