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用于乳腺癌 ctDNA 分钟级定量的 ACEK 生物传感器。

ACEK Biosensor for the Minute-Scale Quantification of Breast Cancer ctDNA.

机构信息

Key Laboratory of Optoelectronic Technology and Systems of Ministry of Education of China, Chongqing University, Chongqing 400044, China.

Center of Smart Laboratory and Molecular Medicine, NHC Key Laboratory of Birth Defects and Reproductive Health, School of Medicine, Chongqing University, Chongqing 400044, China.

出版信息

Sensors (Basel). 2024 Jan 15;24(2):547. doi: 10.3390/s24020547.

Abstract

Circulating tumor DNA (ctDNA) appears as a valuable liquid biopsy biomarker in the early diagnosis, treatment, and prognosis of cancer. Here, a biosensing method derived from the AC electrokinetics (ACEK) effect was constructed in this study for the simple, efficient, and rapid method of detection of ctDNA. In the proof-of-concept experiment, ctDNA from the PIK3CA E542K mutant in breast cancer was quantified by detecting a normalized capacitance change rate using a forked-finger gold electrode as the sensing electrode in combination with the ACEK effect. We compared two formats for the construction of the approach by employing varied immobilization strategies; one is to immobilize the DNA capture probe on the electrode surface by Au-S bonding, while the other immobilizes the probe on a self-assembled membrane on the electrode surface by amide bonding. Both formats demonstrated ultrafast detection speed by completing the ctDNA quantification within 1 min and a linear range of 10 fM-10 pM was observed. Meanwhile, the immobilization via the self-assembled membrane yielded improved stability, sensitivity, and specificity than its Au-S bonding counterpart. A detection limit of 1.94 fM was eventually achieved using the optimized approach. This research provides a label-free and minute-scale universal method for the detection of various malignant tumors. The ctDNA biosensors based on the ACEK effect improved according to the probe type or electrode structure and have potential applications in tumor drug efficacy prediction, drug resistance monitoring, screening of high-risk groups, differential diagnosis, monitoring of tiny residual lesions, and prognosis determination.

摘要

循环肿瘤 DNA(ctDNA)作为一种有价值的液体活检生物标志物,可用于癌症的早期诊断、治疗和预后。在这里,本研究构建了一种基于交流电泳(ACEK)效应的生物传感方法,用于简单、高效、快速地检测 ctDNA。在概念验证实验中,通过叉指金电极作为传感电极检测归一化电容变化率,结合 ACEK 效应,定量检测乳腺癌 PIK3CA E542K 突变的 ctDNA。我们通过采用不同的固定化策略比较了两种构建方法的格式;一种是通过 Au-S 键将 DNA 捕获探针固定在电极表面上,另一种是通过酰胺键将探针固定在电极表面上的自组装膜上。这两种格式都通过在 1 分钟内完成 ctDNA 定量,表现出超快的检测速度,观察到 10 fM-10 pM 的线性范围。同时,通过自组装膜进行固定化比 Au-S 键固定化具有更好的稳定性、灵敏度和特异性。最终使用优化后的方法实现了 1.94 fM 的检测限。这项研究为各种恶性肿瘤的检测提供了一种无标记、微小规模的通用方法。根据探针类型或电极结构改进的基于 ACEK 效应的 ctDNA 生物传感器具有在肿瘤药物疗效预测、耐药性监测、高危人群筛查、鉴别诊断、微小残留病灶监测和预后判断等方面的潜在应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d025/10818266/5eb9963adbb3/sensors-24-00547-g001.jpg

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