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用于电化学免疫传感的多功能铈纳米标记物,具有增强的稳健性和性能:以结直肠癌病例中TIM-1的测定为例

Multifunctional cerium nanolabels in electrochemical immunosensing with improved robustness and performance: determination of TIM-1 in colorectal cancer scenarios as a case study.

作者信息

Cabrero-Martín Andrea, Santiago Sara, Serafín Verónica, Pedrero María, Montero-Calle Ana, Pingarrón José M, Barderas Rodrigo, Campuzano Susana

机构信息

Departamento de Química Analítica, Facultad de CC. Químicas, Universidad Complutense de Madrid, Pza. de Las Ciencias 2, 28040, Madrid, Spain.

Chronic Disease Programme, UFIEC, Institute of Health Carlos III, Majadahonda, 28220, Madrid, Spain.

出版信息

Mikrochim Acta. 2025 Mar 19;192(4):243. doi: 10.1007/s00604-025-07021-3.

DOI:10.1007/s00604-025-07021-3
PMID:40107988
Abstract

A multifunctional cerium oxide nanoparticles (CeONPs)-based nanolabel is exploited to implement an electrochemical sandwich-type immunoplatform for the determination of T-cell immunoglobulin and mucin domain 1 (TIM-1) biomarker, a mucin-like class I membrane glycoprotein associated with cancer angiogenesis. The immunoplatform is constructed using screen-printed electrodes where capture antibody is immobilized through the chemistry of diazonium salts. CeONPs exhibit robust pseudo-peroxidase activity even at high substrate concentrations. They are covalently functionalized in a simple manner after carboxylation with a detector antibody (dAb), acting dually as a nanozyme and nanocarrier for sensing bioreceptors. This allows the development of immunoplatforms with improved robustness and performance (in terms of a moderate enhancement in sensitivity, a significant expansion in the linear range, and a reduction in the background current) compared with the immunoplatforms prepared using nanolabels also decorated with the natural enzyme (horseradish peroxidase, HRP) or the conventional enzymatic labeling involving the dAb and an HRP-secondary antibody. Under the optimized experimental conditions, the developed electrochemical immunoplatform allows the highly sensitive detection of the TIM-1 glycoprotein, with a detection limit of 9.9 pg mL and a linear working range of 33-600 pg mL. This performance permits biomarker quantification within clinically relevant ranges. This innovative configuration enables the precise diagnosis and stratification of colorectal cancer patients by analyzing plasma samples without pretreatment beyond a sample dilution and allows establishment of the first cut-off values reported for this purpose.

摘要

一种基于多功能氧化铈纳米颗粒(CeONPs)的纳米标记物被用于构建一种电化学夹心型免疫平台,用于检测T细胞免疫球蛋白和粘蛋白结构域1(TIM-1)生物标志物,这是一种与癌症血管生成相关的粘蛋白样I类膜糖蛋白。该免疫平台采用丝网印刷电极构建,捕获抗体通过重氮盐化学法固定。即使在高底物浓度下,CeONPs也表现出强大的拟过氧化物酶活性。在用检测抗体(dAb)羧化后,它们以简单的方式进行共价功能化,同时作为纳米酶和纳米载体来传感生物受体。与使用也装饰有天然酶(辣根过氧化物酶,HRP)的纳米标记物或涉及dAb和HRP二抗的传统酶标记制备的免疫平台相比,这使得能够开发出具有更高稳健性和性能(在灵敏度适度提高、线性范围显著扩大以及背景电流降低方面)的免疫平台。在优化的实验条件下,所开发的电化学免疫平台能够高灵敏度地检测TIM-1糖蛋白,检测限为9.9 pg/mL,线性工作范围为33 - 600 pg/mL。这种性能允许在临床相关范围内对生物标志物进行定量。这种创新配置能够通过分析未经除样品稀释之外的预处理的血浆样本,对结直肠癌患者进行精确诊断和分层,并允许为此目的建立首个报告的临界值。

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