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Ultrasmall Ag2Te Quantum Dots with Rapid Clearance for Amplified Computed Tomography Imaging and Augmented Photonic Tumor Hyperthermia

机译:超高速ag2te量子点,具有扩增的计算机断层扫描成像和增强光子肿瘤热疗的快速间隙

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With the fast development of nanomedicine, the imaging-guided and photo-induced cancer monotherapies can efficiently eliminate tumor lesions, which are strongly dependent on the construction of versatile theranostic nanoplatforms. Among diverse photo-converting nanoplatforms, silver chalcogenide nanoparticles feature high biocompatibility, narrow band gaps, and tunable optical properties, yet Ag2Te-based nanosystems are still at a proof-of-concept stage, and the exploration of Ag2Te-based nanosystems suitable for photonic tumor hyperthermia is challenging. Herein, we report on the construction of versatile ultrasmall Ag2Te quantum dots (QDs) via a facile biomineralization strategy. Especially, these Ag2Te QDs with negligible toxicity and excellent biocompatibility were developed for X-ray computed tomography (CT) imaging-guided photonic tumor hyperthermia by near-infrared (NIR) activation. The fabricated Ag2Te QDs exhibited a high tumor suppression rate (94.3%) on 4T1 breast tumor animal models due to the high photothermal-conversion efficiency (50.5%). Mechanistically, Ag2Te QDs were promising potential CT imaging agents for imaging guidance and monitoring during photonic hyperthermia. Importantly, Ag2Te QDs were rapidly eliminated from the body via feces and urine because of their ultrasmall sizes. This work not only broadens the biomedical applications of silver chalcogenide-based theranostic nanosystems but also provides the paradigm of theranostic nanosystems with a photonic tumor hyperthermia effect and outstanding contrast enhancement of high-performance CT imaging.
机译:随着纳米医生的快速发展,显影引导和光诱导的癌症单极可以有效地消除肿瘤病变,这牢固依赖于多功能治疗纳米载体的构建。在不同的光转换纳米片中,银硫属化物纳米颗粒具有高生物相容性,窄带间隙和可调光学性质,但基于Ag2Te的纳米系统仍处于概念验证阶段,以及适用于光子的Ag2Te的纳米系统的探索肿瘤热疗是挑战性的。在此,我们通过容易生物矿化策略报告了多功能超越AG2TE QUATUM点(QDS)的构建。特别是,通过近红外(NIR)激活,开发了这些具有可忽略毒性和优异的生物相容性的具有可忽略毒性和优异的生物相容性的QD。由于高光热转换效率(50.5%),所制造的Ag2TeQD在4T1乳腺肿瘤动物模型上表现出高肿瘤抑制率(94.3%)。机械地,AG2TE QD是希望在光子热疗期间进行成像引导和监测的潜在CT成像剂。重要的是,由于其超超大尺寸,Ag2Te QD通过粪便和尿液从身体迅速消除。这项工作不仅拓宽了银硫属化物的治疗型纳米系统的生物医学应用,而且还提供了具有光子肿瘤热疗效应和高性能CT成像的优异对比度的纳米系统的范例。

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