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优化用于生物成像的红色和近红外 CuInS2 和 AgInS2 半导体纳米晶体的合成。

Optimizing the synthesis of red- and near-infrared CuInS2 and AgInS2 semiconductor nanocrystals for bioimaging.

机构信息

School of Science, Changchun University of Science and Technology, Changchun, 130022, P.R. China.

出版信息

Analyst. 2013 Oct 21;138(20):6144-53. doi: 10.1039/c3an01030a. Epub 2013 Aug 22.

Abstract

This work reports the study of optimization of the reaction parameters on the synthesis of high quality CuInS2 and AgInS2 nanocrystals for bioimaging applications. The concentration of reaction precursors (e.g. Ag, Cu, In and S) plays a key role in determining the emission profile of these ternary quantum dots (QDs). By carefully varying the precursor compositions, the emission of QD can be tuned from red to near infrared (NIR) region. Taking the advantages of NIR emission, which possesses minimal absorption in biological tissues, we have also prepared water-dispersible CuInS2/ZnS and AgInS2/ZnS nanocrystals and demonstrated the high biocompatibility for both deep tissue penetration and tumor targeting. The QDs were stabilized in Pluronic F127 block copolymer micelles, offering us optically and colloidally stable contrast agents for in vitro and in vivo imaging. Two-photon excitation of QD has also been demonstrated, accomplishing a NIR-to-NIR transaction. This study devotes the key steps in promoting the use of ternary QDs as low-toxic, photostable, and cadmium-free semiconductor nanocrystal formulation for multiple imaging applications.

摘要

这项工作报道了优化反应参数的研究,以合成高质量的 CuInS2 和 AgInS2 纳米晶体,用于生物成像应用。反应前体(如 Ag、Cu、In 和 S)的浓度在决定这些三元量子点(QD)的发射谱中起着关键作用。通过仔细改变前体组成,可以将 QD 的发射从红色调谐到近红外(NIR)区域。利用 NIR 发射的优势,其在生物组织中的吸收最小,我们还制备了水分散的 CuInS2/ZnS 和 AgInS2/ZnS 纳米晶体,并证明了它们在深层组织穿透和肿瘤靶向方面具有高生物相容性。QD 被稳定在 Pluronic F127 嵌段共聚物胶束中,为体外和体内成像提供了光学和胶体稳定的对比剂。还证明了 QD 的双光子激发,实现了从 NIR 到 NIR 的转换。这项研究致力于促进使用三元 QD 作为低毒性、光稳定且不含镉的半导体纳米晶体制剂,用于多种成像应用的关键步骤。

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