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Controllable growth of Au nanostructures onto MoS2 nanosheets for dual-modal imaging and photothermal-radiation combined therapy

机译:Au纳米结构的可控生长到二硫化钼nanosheets dual-modal成像和photothermal-radiation联合治疗

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摘要

Multifunctional theranostic nanoagents are attractive to realize comprehensive imaging and effective treatment of tumours. Herein, a novel strategy is developed to controllably guide the epitaxial growth of gold nanostructures onto MoS2 nanosheets. The as-prepared MoS2-Au nanostructures (MA) manifest an enhanced near-infrared (NIR) absorbance with strong photostability. After modification, the obtained MA-PEG shows strong X-ray attenuation and photothermal conversion ability, promising for CT and photoacoustic imaging with an enhanced intensity in tumours. Moreover, in vivo photothermal and radiation therapy with MA-PEG achieves synergistic tumour treatment efficiency through hyperthermia elevated oxygenation level and sensitized radiation therapy. This work illustrates the development of a unique MA nanostructure with enhanced NIR absorbance and strong photoelectric absorbance as a multifunctional theranostic agent with great potential for dual-modal imaging-guided photothermal-radiation therapy of cancer.
机译:多功能theranostic nanoagents是有吸引力的综合成像肿瘤的有效治疗。策略是发展可控的指导外延生长的黄金纳米二硫化钼nanosheets。纳米结构(MA)一个增强的体现近红外(NIR)吸光度与强大耐光性。MA-PEG显示强大的x射线衰减和对CT光热光谱分析转换能力,承诺和一个增强的光声成像强度在肿瘤。与MA-PEG光热光谱分析和放射治疗实现协同肿瘤治疗效率通过高温氧化水平升高和敏化放疗。说明了马一个独特的发展与增强的近红外光谱吸光度和纳米结构强大的光电吸光度作为多功能theranostic代理的潜力dual-modal成像制导photothermal-radiation治疗癌症。

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