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基于多孔硅的适体传感器:用于癌症蛋白质生物标志物检测

Porous Silicon-Based Aptasensors: Toward Cancer Protein Biomarker Detection.

作者信息

Arshavsky-Graham Sofia, Ward Simon J, Massad-Ivanir Naama, Scheper Thomas, Weiss Sharon M, Segal Ester

机构信息

Department of Biotechnology and Food Engineering, Technion-Israel Institute of Technology, Haifa 3200003, Israel.

Institute of Technical Chemistry, Leibniz Universität Hannover, Callinstraße 5, 30167 Hanover, Germany.

出版信息

ACS Meas Sci Au. 2021 Oct 20;1(2):82-94. doi: 10.1021/acsmeasuresciau.1c00019. Epub 2021 Aug 25.

Abstract

The anterior gradient homologue-2 (AGR2) protein is an attractive biomarker for various types of cancer. In pancreatic cancer, it is secreted to the pancreatic juice by premalignant lesions, which would be an ideal stage for diagnosis. Thus, designing assays for the sensitive detection of AGR2 would be highly valuable for the potential early diagnosis of pancreatic and other types of cancer. Herein, we present a biosensor for label-free AGR2 detection and investigate approaches for enhancing the aptasensor sensitivity by accelerating the target mass transfer rate and reducing the system noise. The biosensor is based on a nanostructured porous silicon thin film that is decorated with anti-AGR2 aptamers, where real-time monitoring of the reflectance changes enables the detection and quantification of AGR2, as well as the study of the diffusion and target-aptamer binding kinetics. The aptasensor is highly selective for AGR2 and can detect the protein in simulated pancreatic juice, where its concentration is outnumbered by orders of magnitude by numerous proteins. The aptasensor's analytical performance is characterized with a linear detection range of 0.05-2 mg mL, an apparent dissociation constant of 21 ± 1 μM, and a limit of detection of 9.2 μg mL (0.2 μM), which is attributed to mass transfer limitations. To improve the latter, we applied different strategies to increase the diffusion flux to and within the nanostructure, such as the application of isotachophoresis for the preconcentration of AGR2 on the aptasensor, mixing, or integration with microchannels. By combining these approaches with a new signal processing technique that employs Morlet wavelet filtering and phase analysis, we achieve a limit of detection of 15 nM without compromising the biosensor's selectivity and specificity.

摘要

前梯度同源物-2(AGR2)蛋白是各类癌症颇具吸引力的生物标志物。在胰腺癌中,它由癌前病变分泌至胰液中,这将是诊断的理想阶段。因此,设计用于灵敏检测AGR2的分析方法对于胰腺癌及其他类型癌症的潜在早期诊断具有极高价值。在此,我们展示了一种用于无标记检测AGR2的生物传感器,并研究通过加速目标传质速率和降低系统噪声来提高适配体传感器灵敏度的方法。该生物传感器基于用抗AGR2适配体修饰的纳米结构多孔硅薄膜,通过实时监测反射率变化能够检测和定量AGR2,以及研究扩散和目标-适配体结合动力学。该适配体传感器对AGR2具有高度选择性,能够在模拟胰液中检测该蛋白,其中其浓度比众多其他蛋白低几个数量级。该适配体传感器的分析性能表现为线性检测范围为0.05 - 2 mg/mL,表观解离常数为21±1 μM,检测限为9.2 μg/mL(0.2 μM),这归因于传质限制。为改善后者,我们应用了不同策略来增加向纳米结构内及在纳米结构内的扩散通量,例如应用等速电泳在适配体传感器上对AGR2进行预浓缩、混合或与微通道集成。通过将这些方法与采用Morlet小波滤波和相位分析的新信号处理技术相结合,我们在不影响生物传感器选择性和特异性的情况下实现了15 nM的检测限。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/30d6/9888530/ef49e3f1d759/tg1c00019_0001.jpg

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