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자료유형
학술저널
저자정보
Liu, Bruce Yao Wen (Institute of Physics, Academia Sinica) Chen, Cheng-Lung (Institute of Physics, Academia Sinica) Lee, Shin-Yu (Institute of Physics, Academia Sinica) Chang, Fu-Hsiung (Institute of Biochemistry and Molecular Biology, National Taiwan University) Lin, Win-Li (Institute of Biomedical Engineering, National Taiwan University) Chia, Chih-Ta (Department of Physics, National Taiwan Normal University) Chen, Yang-Yuan (Institute of Physics, Academia Sinica)
저널정보
테크노프레스 Biomaterials and biomedical engineering Biomaterials and biomedical engineering 제1권 제1호
발행연도
2014.1
수록면
41 - 50 (10page)

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Gold nanorod's exceptional light to heat transduction is a robust phonomenon that has been extensively verified. The phenomenon is a trait from which many novel applications across disciplines have been proposed. In this investigation, the feasibility of utilizing heat harvested from such photothermal method to combat cancer is presented. Using non-invasive laser methods, an in vivo study is conducted on mouse ear tumors administered with gold nanorods (Au NRs). An emphasis is placed on monitoring the tumor developments after photothermal treatments, over time. The findings reveal significant tumor growth surpression at a threshold laser power of $0.6W/cm^2$ lasting 2 minutes; this energy also brought about dramatic size reduction in treated tumors. Furthermore, the apparent formation of an eschar over the laser treated region indicates extensive hemorrhagic necrosis of the tumor tissue; a phenomenon implicative to the inhibition of angiogenesis.

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