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仿生免疫磁性金杂化纳米粒子与电感耦合等离子体质谱联用检测循环肿瘤细胞

Biomimetic immunomagnetic gold hybrid nanoparticles coupled with inductively coupled plasma mass spectrometry for the detection of circulating tumor cells.

作者信息

Chang Zhi-Min, Zhou Hang, Yang Chao, Zhang Rui, You Qiannan, Yan Ruhong, Li Li, Ge Mingfeng, Tang Yuguo, Dong Wen-Fei, Wang Zheng

机构信息

Academy for Engineering & Technology, Fudan University, Shanghai 200433, China.

出版信息

J Mater Chem B. 2020 Jun 21;8(23):5019-5025. doi: 10.1039/d0tb00403k. Epub 2020 May 12.

Abstract

Immunomagnetic beads are important tools for the isolation and detection of circulating tumor cells (CTCs). However, the current immunomagnetic bead technique provides poor CTC separation purity due to nonspecific binding of background cells. Furthermore, immunomagnetic beads have not been appropriately functionalized for enabling CTC analysis and quantification. In this work, bimetallic magnetic gold nanoparticles were prepared and coated with leukocyte membranes to form leukocyte membrane-camouflaged nanoparticles. After conjugation with the antibody of epithelial cell adhesion molecule (EpCAM), the biomimetic immunomagnetic gold nanoparticles (CM-FeO@Au-Ab) showed a high specific recognition ability on mock (EpCAM-positive) CTCs and a reduced interaction with leukocytes. We subsequently optimized the conditions for CTC separation, including the concentration of nanoparticles and the incubation time. Under the optimized conditions, CM-FeO@Au-Ab exhibited high CTC capture efficiency with negligible background cell binding in mock clinical blood samples. More importantly, gold probes were tagged on the surface of these separated CTCs. When coupled with ICP-MS analysis, the number of CTCs and gold signals exhibited a good linear relationship, and a low limit of detection was obtained, enabling us to estimate the number of CTCs in blood samples. Hence, we expected that CM-FeO@Au-Ab could provide an opportunity to surmount the limitations of current CTC detection.

摘要

免疫磁珠是用于循环肿瘤细胞(CTC)分离和检测的重要工具。然而,由于背景细胞的非特异性结合,当前的免疫磁珠技术提供的CTC分离纯度较低。此外,免疫磁珠尚未进行适当的功能化以实现CTC分析和定量。在这项工作中,制备了双金属磁性金纳米颗粒并用白细胞膜包被,以形成白细胞膜伪装的纳米颗粒。与上皮细胞粘附分子(EpCAM)抗体偶联后,仿生免疫磁金纳米颗粒(CM-FeO@Au-Ab)对模拟(EpCAM阳性)CTC表现出高特异性识别能力,与白细胞的相互作用减少。我们随后优化了CTC分离条件,包括纳米颗粒浓度和孵育时间。在优化条件下,CM-FeO@Au-Ab在模拟临床血样中表现出高CTC捕获效率,背景细胞结合可忽略不计。更重要的是,金探针标记在这些分离的CTC表面。当与电感耦合等离子体质谱(ICP-MS)分析结合时,CTC数量与金信号呈现良好的线性关系,并获得了低检测限,使我们能够估计血样中的CTC数量。因此,我们期望CM-FeO@Au-Ab能够提供一个克服当前CTC检测局限性的机会。

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