天津医科大学肿瘤医院,美国俄克拉荷马中央大学,数理学院,生物医学跨学科教育与研究中心,生物光子学实验室,埃德蒙,俄克拉荷马州,美国,美国俄克拉荷马中央大学,数理学院,生物医学跨学科教育与研究中心,生物光子学实验室,埃德蒙,俄克拉荷马州,美国
美国国家卫生研究院(RS20132225-106,国家研究资源中心的INBRE项目)和俄克拉荷马州科学技术促进中心(HR16-085)资助项目
Interventional therapy department,Tianjin Key Laboratory of Cancer Prevention and Therapy,Tianjin Medical University Cancer Institute and Hospital,Tianjin,Biophotonics Research Laboratory,Center for Interdisciplinary Biomedical Education and Research,College of Mathematics and Science,University of Central Oklahoma,Edmond,Oklahoma,,USA,Biophotonics Research Laboratory,Center for Interdisciplinary Biomedical Education and Research,College of Mathematics and Science,University of Central Oklahoma,Edmond,Oklahoma,,USA
This work was supported by grants from the US National Institutes of Health (RS20132225-106 from the INBRE Program of the National Center for Research Resources) and the Oklahoma Center for Advancement of Science and Technology (HR16-085)
本研究分别从细胞层面和在体层面,研究纳米氧化石墨烯(nano graphene oxide,NGO)联合805 nm近红外激光对于肿瘤的杀伤和免疫刺激作用.细胞实验证实NGO具有良好的光热转换效应,联合激光治疗,能够有效杀伤肿瘤细胞.此外,NGO能够刺激巨噬细胞产生IL-6及TNFα,并增强激光杀伤的肿瘤细胞对巨噬细胞的免疫刺激效应.在体实验中,在小鼠背部不同位置使用同一瘤株种植两个瘤块,模拟局部原发肿瘤和转移瘤.实验结果表明,NGO联合激光治疗可以有效消融局部肿瘤,并且,未治疗的远隔部位肿瘤生长速度也显著降低.说明NGO联合激光治疗的方式在局部杀伤原位肿瘤的同时,可能诱发了机体的抗肿瘤免疫反应,从而达到了抑制远隔肿瘤生长的效果.
The tumor killing and immune stimulation effects of photothermal therapy using nano graphene oxide(NGO)were studied in vitro and in vivo. For in vitro study, NGO showed a good photothermal conversion effect, increasing temperature under laser irradiation to destroy tumor cells. In addition, NGO could effectively stimulate the production of IL-6 and TNFα by macrophages and enhance the immune response of macrophages to laser-treated tumor cells. For in vivo study, two tumors were inoculated on both sides of the back of mice, serving as the local primary tumor and surrogate distal metastatic tumor. The results showed that the treatment of NGO combined with laser could effectively ablate the treated primary tumor, and inhibit the growth of untreated distal tumor. It suggested that the treatment of NGO combined with laser therapy could stimulate the anti-tumor immune response of the body to attack distal metastases.
李勇,周非凡,陈伟.研究报告: 氧化石墨烯介导的光热免疫疗法治疗转移性小鼠乳腺肿瘤[J].生物化学与生物物理进展,2017,44(12):1095-1102
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