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首页> 外文期刊>Analytical chemistry >Carbon Quantum Dot Stabilized Gadolinium Nanoprobe Prepared via a One-Pot Hydrothermal Approach for Magnetic Resonance and Fluorescence Dual-Modality Bioimaging
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Carbon Quantum Dot Stabilized Gadolinium Nanoprobe Prepared via a One-Pot Hydrothermal Approach for Magnetic Resonance and Fluorescence Dual-Modality Bioimaging

机译:通过一锅水热方法制备的碳量子点稳定的Nano纳米探针的磁共振和荧光双峰生物成像。

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Magnetic resonance imaging (MRI) is used extensively for clinical diagnoses. It is critical to design and develop highly efficient MR contrast agents with simple preparation procedure, low toxicity, and high biocompatibility. Here, we report a carbon quantum dots (CQDs)-stabilized gadolinium hybrid nanoprobe (Gd-CQDs) prepared via a one-pot hydrothermal treatment of the mixture of citrate acid, ethanediamine, and GdCl3 at 200 degrees C for 4 h. In vitro and in vivo tests confirmed their low toxicity and high biocompatibility. Gd-CQDs were observed to have a higher MR response than gadopentetic acid dimeglumine (Gd-DTPA) because of their high Gd content and hydrophilicity. Moreover, the fluorescence of CQDs was remained in Gd-CQDs. The in vivo MR and fluorescence dual-modality imaging of Gd-CQDs was confirmed with zebrafish embryo and mice as models. The modification of Gd-CQDs with arginine-glycine-aspartic acid (RGD) tripeptide provided a high affinity to U87 cancer cells for targeted imaging. Whereas the MR response showed a depth penetration and spatial visualization, fluorescence revealed the fine distribution of Gd-CQDs in tissues because of its high resolution and sensitivity. We found that Gd-CQDs distributed in the tissues in a heterogeneous mode: they entered into the tissue cells but were observed less in the extracellular matrix. The MR and fluorescence dual-modality imaging of Gd-CQDs makes them a potential contrast agent for clinic applications because of their simple preparation procedure, ease of functionalization, high contrast efficiency, low toxicity, and high biocompatibility.
机译:磁共振成像(MRI)已广泛用于临床诊断。设计和开发具有简单制备程序,低毒性和高生物相容性的高效MR造影剂至关重要。在这里,我们报告了通过对柠檬酸,乙二胺和GdCl3的混合物在200摄氏度下进行一锅水热处理4小时制得的碳量子点(CQDs)稳定的g杂化纳米探针(Gd-CQDs)。体外和体内试验证实了它们的低毒性和高生物相容性。由于Gd-CQDs的Gd含量高且具有亲水性,因此它比g多戊酸二聚葡胺(Gd-DTPA)的MR响应更高。而且,CQD的荧光保留在Gd-CQD中。以斑马鱼胚胎和小鼠为模型,证实了Gd-CQDs的体内MR和荧光双峰成像。用精氨酸-甘氨酸-天冬氨酸(RGD)三肽修饰Gd-CQDs为靶向成像提供了对U87癌细胞的高亲和力。 MR反应显示深度穿透和空间可视化,而荧光显示Gd-CQDs在组织中的精细分布,因为它具有很高的分辨率和灵敏度。我们发现Gd-CQDs以异质模式分布在组织中:它们进入组织细胞,但在细胞外基质中观察到的较少。 Gd-CQD的MR和荧光双峰成像使它们成为临床应用的潜在造影剂,因为它们的制备过程简单,易于功能化,造影剂效率高,毒性低和生物相容性高。

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