稳定氢键钴卟啉框架高效电化学检测癌胚抗原

IF 13.9 Q1 CHEMISTRY, MULTIDISCIPLINARY
Youfa Wang, Jie Han, Geoffrey I. N. Waterhouse, Huiwen Gu, Rui Wang, Shuang Wu, Pengfei Dong, Vijaya Raghavan, Jin Wang
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引用次数: 0

摘要

准确灵敏地检测血液中低丰度癌症相关生物标志物仍然是临床应用中的关键技术挑战。本文成功研制了一种基于稳定氢键钴卟啉框架(Co-HOF)的简单准确的三明治型电化学免疫传感器,用于癌症相关生物标志物癌胚抗原(CEA)的超灵敏检测。抗体修饰的Co-HOF仅在CEA存在的情况下与CEA适配体电极形成三明治结构,实现了CEA的特异性电化学检测。电化学信号随CEA浓度呈线性增加,线性范围宽(0.001 ~ 50 ng mL - 1),检出限低(0.22 pg mL - 1),优于商用ELISA试剂盒和大多数报道的检测方法。该传感器可用于人血清中CEA的检测,加标回收率为85.04% ~ 105.20%。此外,我们收集了结直肠癌患者和健康个体的血液样本来临床验证传感器,观察到CEA水平随着癌症进展而增加。传感器检测结果与商用ELISA试剂盒检测结果具有较强的一致性(R2 = 0.995),表明该传感器在CEA及相关肿瘤生物标志物的临床检测中具有实用性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Stable Hydrogen-Bonded Cobalt-porphyrin Framework for High-Performance Electrochemical Detection of Carcinoembryonic Antigen

Stable Hydrogen-Bonded Cobalt-porphyrin Framework for High-Performance Electrochemical Detection of Carcinoembryonic Antigen

The accurate and sensitive detection of low-abundance cancer-related biomarkers in blood remains a key technical challenge in clinical applications. Herein, a simple and accurate sandwich-type electrochemical immunosensor based on a stable hydrogen-bonded cobalt-porphyrin framework (Co-HOF) was successfully developed for the ultrasensitive detection of the cancer-related biomarker, carcinoembryonic antigen (CEA). The antibody-modified Co-HOF forms a sandwich structure with the CEA aptamer electrode exclusively in the presence of CEA, enabling the specific electrochemical detection of CEA. The electrochemical signal increased linearly with the concentration of CEA, demonstrating a wide linear range (0.001–50 ng mL−1) and a low detection limit (0.22 pg mL−1), surpassing the performance of commercial ELISA kits and most reported detection methods. The sensor was successfully employed for CEA detection in spiked human serum, with recoveries ranging from 85.04% to 105.20%. Additionally, we collected blood samples from colorectal cancer patients and healthy individuals to clinically validate the sensor, observing that CEA levels increased with cancer progression. The sensor detection results showed strong consistency (R2 = 0.995) with those obtained from commercial ELISA kits, demonstrating the proposed sensor's practicality for clinical detection of CEA and related cancer biomarkers.

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CiteScore
17.40
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