声动力疗法
超声波
光动力疗法
活性氧
促炎细胞因子
体内
医学
超声波能量
癌症研究
渗透(战争)
病理
化学
生物医学工程
纳米颗粒
纳米技术
材料科学
内科学
炎症
生物
放射科
生物化学
生物技术
有机化学
工程类
运筹学
作者
Dong Gil You,V. G. Deepagan,Wooram Um,Sangmin Jeon,Seungnam Son,Hyeyoun Chang,Hwa In Yoon,Yong Woo Cho,Maggie Swierczewska,Seulki Lee,Martin G. Pomper,Ick Chan Kwon,Kwangmeyung Kim,Jae Hyung Park
摘要
Abstract The non-invasive photodynamic therapy has been limited to treat superficial tumours, primarily ascribed to poor tissue penetration of light as the energy source. Herein, we designed a long-circulating hydrophilized titanium dioxide nanoparticle (HTiO 2 NP) that can be activated by ultrasound to generate reactive oxygen species (ROS). When administered systemically to mice, HTiO 2 NPs effectively suppressed the growth of superficial tumours after ultrasound treatments. In tumour tissue, the levels of proinflammatory cytokines were elevated several fold and intense vascular damage was observed. Notably, ultrasound treatments with HTiO 2 NPs also suppressed the growth of deeply located liver tumours at least 15-fold, compared to animals without ultrasound treatments. This study provides the first demonstration of the feasibility of using HTiO 2 NPs as sensitizers for sonodynamic therapy in vivo .
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