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蛋白质辅助制备纳米还原氧化石墨烯用于联合体内光声成像和光热治疗。

Protein-assisted fabrication of nano-reduced graphene oxide for combined in vivo photoacoustic imaging and photothermal therapy.

机构信息

Guangdong Key Laboratory of Nanomedicine, Shenzhen Key Laboratory of Cancer Nanotechnology, Institute of Biomedicine and Biotechnology, Shenzhen Institutes of Advanced Technology, Chinese Academy of Sciences, Shenzhen 518055, China.

出版信息

Biomaterials. 2013 Jul;34(21):5236-43. doi: 10.1016/j.biomaterials.2013.03.090. Epub 2013 Apr 18.

Abstract

Theranostic agents are attracting a great deal of attention in personalized medicine. Here, we developed a protein-based, facile method for fabrication of nanosized, reduced graphene oxide (nano-rGO) with high stability and low cytotoxicity. We constructed highly integrated photoacoustic/ultrasonic dual-modality imaging and photothermal therapy platforms, and further demonstrated that the prepared nano-rGO can be used as ready-to-use theranostic agents for both photoacoustic imaging and photothermal therapy without further surface modification. Intravenous administration of nano-rGO in tumor-bearing mice showed rapid and significant photoacoustic signal enhancement in the tumor region, indicating its excellence for passive targeting and photoacoustic imaging. Meanwhile, using a continuous-wave near-infrared laser, cancer cells in vivo were efficiently ablated, due to the photothermal effect of nano-rGO. The results suggest that the nano-rGO with protein-assisted fabrication was well suited for photoacoustic imaging and photothermal therapy of tumor, which is promising for theranostic nanomedicine.

摘要

治疗诊断一体化试剂在个性化医疗中受到了广泛关注。在这里,我们开发了一种基于蛋白质的、简便的方法,用于制备具有高稳定性和低细胞毒性的纳米尺寸还原氧化石墨烯(nano-rGO)。我们构建了高度集成的光声/超声双模成像和光热治疗平台,并进一步证明,所制备的 nano-rGO 可以用作现成的治疗诊断一体化试剂,用于光声成像和光热治疗,而无需进一步的表面修饰。在荷瘤小鼠中静脉注射 nano-rGO 后,肿瘤区域的光声信号迅速显著增强,表明其具有优异的被动靶向和光声成像能力。同时,由于 nano-rGO 的光热效应,利用连续波近红外激光可以有效地消融体内的癌细胞。结果表明,采用蛋白质辅助制备的 nano-rGO 非常适合肿瘤的光声成像和光热治疗,有望成为治疗诊断一体化纳米医学的一种手段。

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