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具有优化光学/磁共振多模态成像性能的钆掺杂碲化镉量子点的简易合成方法。

Facile synthesis of Gd-doped CdTe quantum dots with optimized properties for optical/MR multimodal imaging.

作者信息

Li Zizhen, Dergham Ali, McCulloch Holly, Qin Yubo, Yang Xiuying, Zhang Jingchang, Cao Xudong

机构信息

Department of Chemical and Biological Engineering, University of Ottawa, 161 Louis Pasteur Private, Ottawa, ON, K1N 6N5, Canada.

Hainan Institute of Science and Technology, Haikou, 571126, China.

出版信息

J Biol Inorg Chem. 2017 Dec;22(8):1151-1163. doi: 10.1007/s00775-017-1491-y. Epub 2017 Sep 1.

Abstract

Each imaging modality has its own merits and intrinsic limitations; therefore, combining two or more complementary imaging modalities has become an interesting area of research. Recently, magnetic ion-doped quantum dots have become an increasingly promising class of optical/magnetic resonance multimodal imaging probes due to their excellent physical and chemical properties. In this work, Gd-doped CdTe quantum dots (QDs) were successfully synthesized via a facile one-step refluxing route,and their optimal synthesis conditions were investigated. The prepared CdTe:Gd QDs were shown to exhibit good optical properties with high quantum yields up to 69%, high longitudinal relaxivity (r  = 3.8 mM s), and good crystalline structures. In addition, after further QD surface modification with dextran amine (DA), the resulting DA-modified QDs (i.e. DA-CdTe:Gd QDs) showed strong magnetic resonance imaging contrast (r  = 3.5 mM s) and improved biocompatibility when tested with cell cultures in vitro. Taken together, this new material demonstrated promising performances for both optical and magnetic resonance imaging modalities, suggesting its promising potential applications in non-invasive imaging, particularly in neuronal tracing.

摘要

每种成像方式都有其自身的优点和内在局限性;因此,结合两种或更多种互补的成像方式已成为一个有趣的研究领域。最近,磁性离子掺杂量子点因其优异的物理和化学性质,已成为一类越来越有前景的光学/磁共振多模态成像探针。在这项工作中,通过简便的一步回流法成功合成了掺钆碲化镉量子点(QDs),并研究了其最佳合成条件。所制备的碲化镉:钆量子点显示出良好的光学性质,量子产率高达69%,纵向弛豫率高(r1 = 3.8 mM-1 s-1),且晶体结构良好。此外,在用葡聚糖胺(DA)对量子点进行进一步表面修饰后,所得的DA修饰量子点(即DA-碲化镉:钆量子点)在体外细胞培养测试时表现出强磁共振成像对比度(r2 = 3.5 mM-1 s-1)和改善的生物相容性。综上所述,这种新材料在光学和磁共振成像方式方面都展示出了有前景的性能,表明其在无创成像,特别是在神经元追踪方面具有广阔的潜在应用前景。

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