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用于超灵敏检测尿液精胺以诊断前列腺癌的下一代即时检测工具。

Next-Gen Point-of-Care Tool for Ultra-Sensitive Detection of Urinary Spermine for Prostate Cancer Diagnosis.

作者信息

Dehghani Parisa, Salehirozveh Mostafa, Tajabadi Ataollah, Yeung Chi Chung, Lam Michael, Leung Hing Y, Roy Vellaisamy A L

机构信息

James Watt School of Engineering, University of Glasgow, Glasgow G12 8QQ, U.K.

Department of Physics and Astronomy, University of Bologna, 40126 Bologna, Italy.

出版信息

ACS Sens. 2025 Apr 25;10(4):2640-2651. doi: 10.1021/acssensors.4c03250. Epub 2025 Apr 11.

Abstract

Prostate cancer (PCa), the second most common cancer in men, demands effective early detection strategies. Elevated spermine levels in the prostate tissue contrast with decreased urinary concentrations in PCa patients. Here, we present a novel sensing platform combining differential pulse voltammetry and an extended gate field-effect transistor (EGFET) with a molecularly imprinted polymer|molecular imprinting (MIP) nanofilm for selective and sensitive spermine detection. Key advancements include successfully constructing and characterizing a pseudoreference electrode and a precisely engineered analyte binding interface. The Ag/AgCl pseudoreference electrode exhibited high reliability and reproducibility, optimized to enhance conductivity and minimize interference noises. Electrochemical analysis confirmed successful MIP modification, creating a precise 3D-imprinted binding interface. The platform accurately quantified spermine in artificial urine across concentrations from 0.1 to 1000 ng/mL, achieving a detection limit of 1.23 ng/mL. High selectivity was demonstrated against competing polyamines such as spermidine and histamine. Analysis of electrical properties indicated that spermine binding induced changes in surface potential, altering the metal-oxide-semiconductor field-effect transistor threshold voltage and validating the system's sensitivity. The system's superior performance was confirmed with a high imprinting factor (IF ≈ 4.1) and sensitivity 10 times higher compared to nonimprinted polymers. Hill-Langmuir analysis confirmed a strong binding affinity to spermine. Clinical validation using human urine samples from PCa diagnostic evaluations demonstrated high consistency with liquid chromatography mass spectrometry, exhibiting an excellent linear correlation ( = 0.97) without statistically significant differences (-value <0.0001). This study introduces a robust, miniaturized, and cost-effective EGFET-based sensor for spermine detection, offering substantial potential for clinical diagnostics and PCa biomarker monitoring.

摘要

前列腺癌(PCa)是男性中第二常见的癌症,需要有效的早期检测策略。前列腺组织中精胺水平升高,而PCa患者尿液中的浓度降低。在此,我们展示了一种新型传感平台,该平台将差分脉冲伏安法与扩展栅场效应晶体管(EGFET)相结合,并带有用于选择性和灵敏检测精胺的分子印迹聚合物|分子印迹(MIP)纳米膜。关键进展包括成功构建和表征伪参比电极以及精确设计的分析物结合界面。Ag/AgCl伪参比电极具有高可靠性和可重复性,经过优化以提高电导率并最小化干扰噪声。电化学分析证实MIP修饰成功,创建了精确的三维印迹结合界面。该平台准确地定量了人工尿液中浓度范围为0.1至1000 ng/mL的精胺,检测限达到1.23 ng/mL。对诸如亚精胺和组胺等竞争性多胺表现出高选择性。电学性质分析表明,精胺结合会引起表面电位变化,改变金属氧化物半导体场效应晶体管的阈值电压,从而验证了该系统的灵敏度。该系统具有较高的印迹因子(IF≈4.1),与非印迹聚合物相比灵敏度高10倍,证实了其卓越性能。Hill-Langmuir分析证实了对精胺具有很强的结合亲和力。使用来自PCa诊断评估的人类尿液样本进行的临床验证表明,与液相色谱质谱法具有高度一致性,表现出出色的线性相关性( = 0.97),且无统计学显著差异(-值<0.0001)。本研究介绍了一种用于精胺检测的基于EGFET的强大、小型化且经济高效的传感器,为临床诊断和PCa生物标志物监测提供了巨大潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f682/12038882/4b24c1546812/se4c03250_0001.jpg

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