光热治疗
材料科学
碳纳米管
微波食品加热
癌症研究
生物医学中的光声成像
细胞凋亡
癌症
线粒体
纳米技术
生物医学工程
癌细胞
癌症治疗
生物物理学
医学
细胞生物学
内科学
化学
生物化学
生物
光学
物理
量子力学
作者
Liewei Wen,Wenzheng Ding,Sihua Yang,Da Xing
出处
期刊:Biomaterials
[Elsevier]
日期:2016-01-01
卷期号:75: 163-173
被引量:41
标识
DOI:10.1016/j.biomaterials.2015.10.028
摘要
The ultra-short pulse microwave could excite to the strong thermoacoustic (TA) shock wave and deeply penetrate in the biological tissues. Based on this, we developed a novel deep-seated tumor therapy modality with mitochondria-targeting single wall carbon nanotubes (SWNTs) as microwave absorbing agents, which act efficiently to convert ultra-short microwave energy into TA shock wave and selectively destroy the targeted mitochondria, thereby inducing apoptosis in cancer cells. After the treatment of SWNTs (40 μg/mL) and ultra-short microwave (40 Hz, 1 min), 77.5% of cancer cells were killed and the vast majority were caused by apoptosis that initiates from mitochondrial damage. The orthotopic liver cancer mice were established as deep-seated tumor model to investigate the anti-tumor effect of mitochondria-targeting TA therapy. The results suggested that TA therapy could effectively inhibit the tumor growth without any observable side effects, while it was difficult to achieve with photothermal or photoacoustic therapy. These discoveries implied the potential application of TA therapy in deep-seated tumor models and should be further tested for development into a promising therapeutic modality for cancer treatment.
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