首页> 外文期刊>Photodiagnosis and Photodynamic Therapy >Iron oxide/bismuth oxide nanocomposites coated by graphene quantum dots: 'Three-in-one' theranostic agents for simultaneous CT/MR imaging-guided in vitro photothermal therapy
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Iron oxide/bismuth oxide nanocomposites coated by graphene quantum dots: 'Three-in-one' theranostic agents for simultaneous CT/MR imaging-guided in vitro photothermal therapy

机译:石墨烯量子点涂覆的氧化铁/氧化铋纳米复合材料:“三合一”治疗剂,用于同时进行CT / MR成像引导的体外光热疗法

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Background: The all-in-one nanoprobes (NPs) have drawn biomedical attention in the cancer therapy field due to simultaneously combing the capabilities of therapeutic and diagnostic methods into a single nanoprobe.Method: In this study, we developed a theranostic probe based on superparamagnetic iron oxide (SPIO) and bismuth oxide (Bi2O3) with graphene quantum dots (GQDs) coating to investigate the physical properties for in vitro CT/MR dual-modal biomedical imaging and cancer-specific photothermal therapy (PTT).Result The GQDs-Fe/Bi nanocomposites showed strong light absorbance profile with wide-band in the near-infrared region, without any sharp peak or decline. The highest photo-to-thermal conversion efficacy (n), was found to be 31.8% with the high photostability upon the irradiation of NIR 808-nm laser. The results of in vitro photothermal ablation of cancerous cells demonstrated that the cells significantly killed in the presence of NPs (-53.4%) with a dose-dependent manner in comparison to only laser group (3.0%). In GQDs-Fe/Bi nanocomposites, Bi with a high atomic number (Z = 83) exhibited a superior X-ray attenuation capability (175%) than the clinical CT agent-used dotarem, also, SPIO with excellent magnetization property showed strong T-2-relaxation shortening capability (r(2) = 62.34 mM(-1).s(-1)) as a contrast agent for CT/MR imaging.Conclusion: Our results demonstrate that the developed NPs can incorporate dual-modality imaging capability into a photo absorber for CT/MR imaging-guided tumor PIT.
机译:背景:由于将治疗和诊断方法的功能同时整合到一个纳米探针中,因此多功能纳米探针(NPs)在癌症治疗领域引起了生物医学关注。方法:在本研究中,我们开发了一种基于超顺磁性氧化铁(SPIO)和氧化铋(Bi2O3)涂有石墨烯量子点(GQDs)涂层,以研究体外CT / MR双模态生物医学成像和癌症特异性光热疗法(PTT)的物理性质。 Fe / Bi纳米复合材料表现出很强的吸光度,在近红外区域具有宽带,没有任何尖锐的峰或下降。发现最高的光热转换效率(n)为31.8%,并且在NIR 808-nm激光照射下具有高光稳定性。癌细胞的体外光热消融的结果表明,与仅激光组(3.0%)相比,在NPs(-53.4%)的存在下,细胞以剂量依赖性方式显着杀死。在GQDs-Fe / Bi纳米复合材料中,高原子序数(Z = 83)的Bi表现出比临床CT试剂使用的dotarem更好的X射线衰减能力(175%),而且,具有出色磁化性能的SPIO显示出强T -2-松弛缩短能力(r(2)= 62.34 mM(-1).s(-1))作为CT / MR成像的造影剂。结论:我们的结果表明,开发的NP可整合双模态成像可以用于CT / MR成像引导的肿瘤PIT的光吸收器。

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