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Glucose-functionalized Au nanoprisms for optoacoustic imaging and near-infrared photothermal therapy

机译:葡萄糖功能化的金纳米棱镜,用于光声成像和近红外光热疗法

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摘要

Targeted imaging and tumor therapy using nanomaterials has stimulated research interest recently, but the high cytotoxicity and low cellular uptake of nanomaterials limit their bioapplication. In this paper, glucose (Glc) was chosen to functionalize Au nanoprisms (NPrs) for improving the cytotoxicity and cellular uptake of Au@PEG-Glc NPrs into cancer cells. Glucose is a primary source of energy at the cellular level and at cellular membranes for cell recognition. A coating of glucose facilitates the accumulation of Au@PEG-Glc NPrs in a tumor region much more than Au@PEG NPrs. Due to the high accumulation and excellent photoabsorbing property of Au@PEG-Glc NPrs, enhanced optoacoustic imaging of a tumor in vivo was achieved, and visualization of the tumor further guided cancer treatment. Based on the optical-thermal conversion performance of Au@PEG-Glc NPrs, the tumor in vivo was effectively cured through photothermal therapy. The current work demonstrates the great potential of Au@PEG-Glc NPrs in optoacoustic imaging and photothermal cancer therapy in future.
机译:使用纳米材料的靶向成像和肿瘤治疗近来引起了研究兴趣,但是纳米材料的高细胞毒性和低细胞摄取限制了它们的生物应用。在本文中,选择葡萄糖(Glc)来功能化Au纳米棱镜(NPrs),以改善Au @ PEG-Glc NPrs对癌细胞的细胞毒性和细胞摄取。葡萄糖是细胞水平和细胞膜上用于细胞识别的主要能量来源。与Au @ PEG NPrs相比,葡萄糖涂层促进了Au @ PEG-Glc NPrs在肿瘤区域的积累。由于Au @ PEG-Glc NPrs的高积累和出色的光吸收性能,可以实现体内肿瘤的增强光声成像,并且肿瘤的可视化进一步指导了癌症的治疗。基于Au @ PEG-Glc NPrs的光热转换性能,通过光热疗法可有效治愈体内肿瘤。当前的工作证明了Au @ PEG-Glc NPrs在光声成像和光热癌治疗方面的巨大潜力。

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