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低于皮肤耐受阈值激光功率下的第二近红外窗口抗血管生成联合光热疗法

Antiangiogenesis-Combined Photothermal Therapy in the Second Near-Infrared Window at Laser Powers Below the Skin Tolerance Threshold.

作者信息

Chen Jian-Li, Zhang Han, Huang Xue-Qin, Wan Hong-Ye, Li Jie, Fan Xing-Xing, Luo Kathy Qian, Wang Jinhua, Zhu Xiao-Ming, Wang Jianfang

机构信息

State Key Laboratory of Quality Research in Chinese Medicine, Macau Institute for Applied Research in Medicine and Health, Macau University of Science and Technology, Taipa, Macau SAR, People's Republic of China.

Department of Physics, The Chinese University of Hong Kong, Shatin, Hong Kong SAR, People's Republic of China.

出版信息

Nanomicro Lett. 2019 Oct 31;11(1):93. doi: 10.1007/s40820-019-0327-4.

Abstract

Photothermal agents with strong light absorption in the second near-infrared (NIR-II) region (1000-1350 nm) are strongly desired for successful photothermal therapy (PTT). In this work, titania-coated Au nanobipyramids (NBP@TiO) with a strong plasmon resonance in the NIR-II window were synthesized. The NBP@TiO nanostructures have a high photothermal conversion efficiency of (93.3 ± 5.2)% under 1064-nm laser irradiation. They are also capable for loading an anticancer drug combretastatin A-4 phosphate (CA4P). In vitro PTT studies reveal that 1064-nm laser irradiation can efficiently ablate human lung cancer A549 cells and enhance the anticancer effect of CA4P. Moreover, the CA4P-loaded NBP@TiO nanostructures combined with PTT induce a synergistic antiangiogenesis effect. In vivo studies show that such CA4P-loaded NBP@TiO nanostructures under mild 1064-nm laser irradiation at an optical power density of 0.4 W cm, which is lower than the skin tolerance threshold value, exhibit a superior antitumor effect. This work presents not only the development of the NBP@TiO nanostructures as a novel photothermal agent responsive in the NIR-II window but also a unique combined chemo-photothermal therapy strategy for cancer therapy.

摘要

在光热疗法(PTT)取得成功的过程中,人们迫切需要在第二近红外(NIR-II)区域(1000 - 1350纳米)具有强光吸收能力的光热剂。在这项工作中,合成了在NIR-II窗口具有强等离子体共振的二氧化钛包覆金纳米双锥体(NBP@TiO)。在1064纳米激光照射下,NBP@TiO纳米结构具有高达(93.3±5.2)%的高光热转换效率。它们还能够负载抗癌药物磷酸考布他汀A-4(CA4P)。体外光热疗法研究表明,1064纳米激光照射能够有效消融人肺癌A549细胞,并增强CA4P的抗癌效果。此外,负载CA4P的NBP@TiO纳米结构与光热疗法相结合可诱导协同抗血管生成效应。体内研究表明,在低于皮肤耐受阈值的0.4瓦每平方厘米光功率密度下,经温和的1064纳米激光照射的负载CA4P的NBP@TiO纳米结构表现出卓越的抗肿瘤效果。这项工作不仅展示了NBP@TiO纳米结构作为一种在NIR-II窗口响应的新型光热剂的研发成果,还展示了一种独特的联合化学 - 光热疗法治疗癌症的策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a224/7770887/32d513a6825f/40820_2019_327_Fig1_HTML.jpg

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