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A Semimetal-Like Molybdenum Carbide Quantum Dots Photoacoustic Imaging and Photothermal Agent with High Photothermal Conversion Efficiency

机译:半型类似碳化钼量子点光声成像和光热试剂,具有高光热转换效率

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摘要

Theranostic platforms integrating imaging diagnostic and therapeutic interventions into a single nanoplatform have attracted considerable attention for cancer-individualized therapies. However, their uncertain stability, complex pharmacokinetics, and intrinsic toxicology of multiple components hinder their practical application in clinical research. In this paper, stable and high-concentration molybdenum carbide quantum dots (Mo2C QDs) with a diameter of approximately 6 nm and a topographic height of about 1.5 nm were synthesized using a facile sonication-assisted liquid-phase exfoliation approach. The prepared Mo2C QDs exhibited a strong near-infrared (NIR) absorbance with a high molar extinction coefficient of 4.424 Lg−1cm−1 at 808 nm, a high photothermal conversion efficiency of 42.9%, and showed excellent performance on photoacoustic imaging. The Mo2C QDs had high stability and highly biocompatibility, with low cytotoxicity. Under NIR irradiation, a remarkable in vitro and in vivo therapeutic effect was obtained. Such a stable and biocompatible all-in-one theranostic nanoagent generated by facile synthesis that combines promising imaging guidance and effective tumor ablation properties may hold great potential for theranostic nanomedicine.
机译:治疗诊断平台整合成像诊断和治疗干预成一个单一的纳米平台已经吸引了相当大的关注用于癌症个体化疗法。然而,他们的不确定稳定性,复杂的药代动力学和多种成分固有的毒性阻碍了临床研究它们的实际应用。在本文中,稳定和高浓度碳化钼量子点(量子点的Mo2C)的直径为约6纳米,约1.5nm的高度地形使用的简便超声辅助液相剥离的方法合成。将所制备的量子点的Mo2C表现出强的近红外(NIR)吸收率4.424 LG-1厘米-1在808纳米,42.9%的高光热转换效率高的摩尔消光系数,并显示出对光声成像性能优异。该Mo2C的量子点具有较高的稳定性和高生物相容性,低毒性。下NIR照射,在体外和体内的治疗效果显着得到。这样的稳定​​,并通过简便合成产生的,结合了有希望的成像指导和有效的肿瘤消融特性可以适用于治疗诊断纳米巨大潜力生物相容性所有功能于一身的治疗诊断nanoagent。

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