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Photodynamic Therapy with Blended Conducting Polymer/Fullerene Nanoparticle Photosensitizers
Published on: October 28, 2015
Photodynamic activity of a mitochondria-localized G-quadruplex-responsive fluorescent ligand: Cellular effects and
Yakun Wang1, Jiapeng Dong2, Hongshan Xie2
1School of Biomedical and Pharmaceutical Sciences, Guangdong University of Technology, Guangzhou 510006, China; State Key Laboratory of Chemical Biology and Drug Discovery, Department of Applied Biology and Chemical Technology, The Hong Kong Polytechnic University, Hong Kong, SAR 999077, China.
Abstract:
Mitochondrial localization concentrates photosensitizing molecules near redox-sensitive organelles. In this study, we investigated SPN, a mitochondria-targeted G-quadruplex (G4)-responsive ligand. Photochemical characterization confirmed that SPN generates robust light-triggered ROS and exhibits photooxidative activity in vitro. In cancer cell models under dark conditions, SPN treatment was associated with cell-cycle perturbation, loss of mitochondrial membrane potential, altered mitochondrial morphology, elevated mitochondrial superoxide-sensitive fluorescence, and accumulation of MDC-positive autophagic vacuoles. White-light irradiation markedly enhanced intracellular oxidation-sensitive fluorescence and reduced cell viability at shorter incubation times and lower SPN concentrations. Mechanistically, SPN plus light was associated with reduced NDUFB8 and SDHB abundance and increased cleaved caspase-3 levels, consistent with mitochondrial respiratory chain perturbation and apoptotic signaling. Collectively, these results establish the photodynamic activity of SPN and identify mitochondrial stress and caspase-3-associated apoptosis as central components of its cellular response.
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