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首页> 外文期刊>Nanoscale >Carbon dot-sensitized MoS2 nanosheet heterojunctions as highly efficient NIR photothermal agents for complete tumor ablation at an ultralow laser exposure
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Carbon dot-sensitized MoS2 nanosheet heterojunctions as highly efficient NIR photothermal agents for complete tumor ablation at an ultralow laser exposure

机译:碳dot-sensitized二硫化钼nanosheet垂直作为高效的近红外光谱光热光谱分析代理的完整肿瘤消融在一个超低激光曝光

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Currently, one of the major hurdles hindering the clinical applications of photothermal therapy (PTT) and photothermal-chemo combination therapy (PCT) is the lack of highly efficient, readily derived, and irradiation-safe photothermal agents in the biologically transparent window. Herein, we report the first design and rational construction of 0D/2D/0D sandwich heterojunctions for greatly enhanced PTT and PCT performances using 0D N-doped carbon dots and 2D MoS2 nanosheets as the assembly units. The well-matching heterojunctions enabled an additional enhancement in NIR absorbance owing to the carrier injection from carbon dots to MoS2 nanosheets, and achieved a much higher photothermal conversion efficiency (78.2%) than that of single NIR-CDs (37.6%) and MoS2 (38.3%) only. In virtue of the heterojunction-based PTT, complete tumor recession without recurrence or pulmonary metastasis was realized at an ultralow and safe laser exposure (0.2 W cm(-2)) below the skin tolerance irradiation threshold. Furthermore, by taking advantage of the strong X-ray attenuation and effective drug loading capacity of MoS2 nanosheets, the CT imaging-guided PCT was achieved at 0.1 W cm(-2), without inducing noticeable toxic side effects. Our findings can substantiate the potential of a novel 0D/2D heterojunction for cancer theranostics.
机译:目前,阻碍了的一个主要障碍光照疗法的临床应用(PTT)和photothermal-chemo联合治疗(PCT)是缺乏高效、容易派生,irradiation-safe光热光谱分析代理在生物学上透明的窗口。我们报告的第一个设计和理性建设0 d / 2 d / d三明治垂直极大地增强了PTT和PCT表演使用0 d n型碳点和2 d二硫化钼nanosheets装配单元。良缘垂直启用一个额外提高近红外光谱吸光度由于碳点二硫化钼的载体注入nanosheets,取得了一个高得多光热光谱分析转换效率(78.2%)比单一的NIR-CDs(37.6%)和二硫化钼(38.3%)只有。完整的肿瘤无复发或衰退肺转移实现了超低和安全的激光照射(0.2 W厘米(2))以下皮肤耐受性辐照阈值。此外,利用强x射线衰减和有效的药物装载能力的二硫化钼nanosheets, CT实现了成像制导PCT在0.1 W厘米(2)没有诱导明显有毒副作用。我们的研究结果可以证实的潜力针对癌症的小说0 d / 2 d异质结theranostics。

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