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Preparation, cytotoxicity and in vivo bioimaging of highly luminescent water-soluble silicon quantum dots

机译:高发光水溶性硅量子点的制备,细胞毒性和体内生物成像

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摘要

Designing various inorganic nanomaterials that are cost effective, water soluble, optically photostable, highly fluorescent and biocompatible for bioimaging applications is a challenging task. Similar to semiconducting quantum dots (QDs), silicon QDs are another alternative and are highly fluorescent, but non-water soluble. Several surface modification strategies were adopted to make them water soluble. However, the photoluminescence of Si QDs was seriously quenched in the aqueous environment. In this report, highly luminescent, water-dispersible, blue-and green-emitting Si QDs were prepared with good photostability. In vitro studies in monocytes reveal that Si QDs exhibit good biocompatibility and excellent distribution throughout the cytoplasm region, along with the significant fraction translocated into the nucleus. The in vivo zebrafish studies also reveal that Si QDs can be evenly distributed in the yolk-sac region. Overall, our results demonstrate the applicability of water-soluble and highly fluorescent Si QDs as excellent in vitro and in vivo bioimaging probes.
机译:设计具有成本效益,水溶性,光学光稳定性,高荧光性和生物相容性的各种无机纳米材料以用于生物成像应用是一项艰巨的任务。类似于半导体量子点(QD),硅QD是另一种替代方法,具有高荧光性,但不溶于水。采用了几种表面改性策略以使其水溶性。然而,Si QDs的光致发光在水环境中被严重淬灭。在此报告中,制备了具有良好光稳定性的高发光,水分散性,发射蓝色和绿色的Si QD。对单核细胞的体外研究表明,Si QDs表现出良好的生物相容性,并在整个细胞质区域具有出色的分布,同时还有显着部分转移到细胞核中。体内斑马鱼研究还表明,硅量子点可以均匀地分布在卵黄囊区域。总体而言,我们的结果证明了水溶性和高荧光Si QD作为出色的体外和体内生物成像探针的适用性。

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