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基于石英晶体谐振器技术的用于检测循环肿瘤细胞的生物传感器设计。

Biosensor Design for the Detection of Circulating Tumor Cells Using the Quartz Crystal Resonator Technique.

机构信息

Center for Integrative Nanotechnology Sciences, University of Arkansas at Little Rock, 2801 South University Avenue, Little Rock, AR 72204, USA.

Department of Physics, College of Science, University of Basrah, Basrah 61004, Iraq.

出版信息

Biosensors (Basel). 2023 Mar 29;13(4):433. doi: 10.3390/bios13040433.

Abstract

A new mass-sensitive biosensing approach for detecting circulating tumor cells (CTCs) using a quartz crystal resonator (QCR) has been developed. A mathematical model was used to design a ring electrode-based QCR to eliminate the Gaussian spatial distribution of frequency response in the first harmonic mode, a characteristic of QCRs, without compromising the sensitivity of frequency response. An ink-dot method was used to validate the ring electrode fabricated based on our model. Furthermore, the ring electrode QCR was experimentally tested for its ability to capture circulating tumor cells, and the results were compared with a commercially available QCR with a keyhole electrode. An indirect method of surface immobilization technique was employed via modification of the SiO surface of the ring electrode using a silane, protein, and anti-EpCAM. The ring electrode successfully demonstrated eliminating the spatial nonuniformity of frequency response for three cancer cell lines, i.e., MCF-7, PANC-1, and PC-3, compared with the keyhole QCR, which showed nonuniform spatial response for the same cancer cell lines. These results are promising for developing QCR-based biosensors for the early detection of cancer cells, with the potential for point-of-care diagnosis for cancer screening.

摘要

一种使用石英晶体谐振器(QCR)检测循环肿瘤细胞(CTC)的新型质量敏感生物传感方法已经开发出来。使用数学模型设计了一种基于环形电极的 QCR,以消除 QCR 第一谐频模式中频率响应的高斯空间分布,而不会影响频率响应的灵敏度。采用墨点法对基于我们模型制造的环形电极进行了验证。此外,实验测试了环形电极 QCR 捕获循环肿瘤细胞的能力,并将结果与具有钥匙孔电极的商业 QCR 进行了比较。通过使用硅烷、蛋白质和抗 EpCAM 对环形电极的 SiO 表面进行修饰,采用间接的表面固定化技术。与同样的癌细胞系相比,环形电极成功地证明了消除了频率响应的空间不均匀性,而钥匙孔 QCR 则显示出了相同的癌细胞系的空间响应不均匀。这些结果为开发基于 QCR 的生物传感器用于早期癌症细胞检测提供了希望,有可能用于癌症筛查的即时诊断。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9b4d/10136100/270fcf517a1c/biosensors-13-00433-g001.jpg

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