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Cytotoxic Efficacy of Photodynamic Therapy in Osteosarcoma Cells In Vitro
Published on: March 18, 2014
Ultrasound-responsive bone-targeting liposomes suppress osteosarcoma through enhanced ROS generation and immunogenic
Jingtao Xu1, Yuxing Chen1, Zhenxing Wang1
1Department of Orthopaedic Surgery, Chongqing Municipal Health Commission Key Laboratory of Musculoskeletal Regeneration and Translational Medicine/Orthopaedic Research Laboratory, The First Affiliated Hospital of Chongqing Medical University, 1 Youyi Road, Chongqing 400016, PR China.
Abstract:
Sonodynamic therapy (SDT) demonstrates significant therapeutic potential for deep-seated tumors such as osteosarcoma due to its non-invasive tissue penetration capability. Enhancing reactive oxygen species (ROS) generation efficiency and triggering endogenous immunoamplification pathways are key to improving SDT-mediated osteosarcoma suppression. This study proposes an SDT-based nano-immunoamplifier strategy. Specifically, DSPE-PEG derivatives are successfully grafted with phytic acid (PA) and the sonosensitizer indocyanine green (ICG) via esterification and amidation reactions. Subsequently, ultrasound-responsive bone-targeting nanoliposomes (LPIM) were constructed by co-assembling MnO₂ nanoparticles (3-5 nm) with DSPE-PEG derivatives using the thin-film hydration method. The LPIM achieves targeted delivery to osteosarcoma osteolytic regions through the phosphate groups of PA. The multimodal effects of MnO₂ alleviate the hypoxic tumor microenvironment and suppress the antioxidant barrier of reduced glutathione (GSH), thereby enhancing ROS generation efficiency and SDT-induced immunogenic cell death (ICD). Concurrently, the release of Mn2+ activates the cGAS-STING signaling pathway, triggering endogenous immunoamplification. LPIM achieves osteosarcoma targeting within 24 h in vivo, and under exogenous low-intensity focused ultrasound (US) activation, it markedly suppresses primary osteosarcoma growth (tumor inhibition rate: 93.5%), alleviates osteolysis and inhibits distant metastasis and pulmonary dissemination of osteosarcoma. Collectively, this nano-immunoamplifier strategy provides novel insights into SDT-based therapy for osteosarcoma.
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