Ding Shihui, Wu Wenbo, Peng Tingting, Pang Wen, Jiang Pengfei, Zhan Qiuqiang, Qi Shuhong, Wei Xunbin, Gu Bobo, Liu Bin
School of Biomedical Engineering, Shanghai Jiao Tong University 1954 Huashan Road Shanghai 200030 China
Department of Chemical and Biomolecular Engineering, National University of Singapore 117585 Singapore
Nanoscale Adv. 2021 Feb 24;3(8):2325-2333. doi: 10.1039/d0na00985g. eCollection 2021 Apr 20.
Photodynamic therapy (PDT), a clinically approved cancer treatment strategy, features non-invasiveness, few side-effects, high spatial resolution, The advancement of PDT has been significantly restricted by the penetration depth of the excitation light. Herein, an effective fluorogen, TBD, with aggregation-induced emission characteristics (AIEgen) and high reactive-oxygen-species (ROS) generation efficiency was reported and integrated with a near infrared (NIR) light excitable upconversion nanoparticle (UCNP) to construct NIR light excitable UCNP@TBD nanocomposites. The formed nanocomposite has excellent photostability, good biocompatibility, and efficient ROS generation under NIR light excitation Förster resonance energy transfer (FRET), enabling NIR light excited PDT. Moreover, the proposed NIR light excited PDT can break the impasse between the penetration depth and excitation volume in conventional PDT, effectively improving the anticancer therapeutic outcome. cancer cell ablation and tumor growth inhibition validated that the proposed UCNP@TBD nanocomposite is a promising NIR light excitable PDT agent with great potential for future translational research.
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