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基于布洛赫表面波的生物传感器用于人血浆中 HER2 检测的直接竞争分析。

Direct competitive assay for HER2 detection in human plasma using Bloch surface wave-based biosensors.

机构信息

SAPIENZA Università di Roma, Department of Basic and Applied Sciences for Engineering, Via A. Scarpa, 16, 00161, Roma, Italy.

SAPIENZA Università di Roma, Department of Basic and Applied Sciences for Engineering, Via A. Scarpa, 16, 00161, Roma, Italy; Center for Life Nano and Neuro Science, Italian Institute of Technology (IIT), Viale Regina Elena 291, 00161, Rome, Italy.

出版信息

Anal Biochem. 2024 Jan 1;684:115374. doi: 10.1016/j.ab.2023.115374. Epub 2023 Oct 31.

DOI:10.1016/j.ab.2023.115374
PMID:37914005
Abstract

The overexpression and/or amplification of the HER2/neu oncogene has been proposed as a prognostic marker in breast cancer. The detection of the related peptide HER2 remains a grand challenge in cancer diagnosis and for therapeutic decision-making. Here, we used a biosensing device based on Bloch Surface Waves excited on a one-dimensional photonic crystal (1DPC) as valid alternative to standard techniques. The 1DPC was optimized to operate in the visible spectrum and the biosensor optics has been designed to combine label-free and fluorescence operation modes. This feature enables a real-time monitoring of a direct competitive assay using detection mAbs conjugated with quantum dots for an accurate discrimination in fluorescence mode between HER2-positive/negative human plasma samples. Such a competitive assay was implemented using patterned alternating areas where HER2-Fc chimera and reference molecules were bio-conjugated and monitored in a multiplexed way. By combining Label-Free and fluorescence detection analysis, we were able to tune the parameters of the assay and provide an HER2 detection in human plasma in less than 20 min, allowing for a cost-effective assay and rapid turnaround time. The proposed approach offers a promising technique capable of performing combined label-free and fluorescence detection for both diagnosis and therapeutic monitoring of diseases.

摘要

HER2/neu 癌基因的过表达和/或扩增已被提议作为乳腺癌的预后标志物。相关肽 HER2 的检测仍然是癌症诊断和治疗决策的重大挑战。在这里,我们使用基于 Bloch 表面波在一维光子晶体(1DPC)上激发的生物传感设备作为标准技术的有效替代方案。1DPC 经过优化可在可见光谱中运行,并且生物传感器光学设计旨在结合无标记和荧光操作模式。该功能可实现使用与量子点偶联的检测 mAb 进行直接竞争测定的实时监测,以在荧光模式下对 HER2 阳性/阴性人血浆样本进行准确区分。使用图案交替区域实施这种竞争性测定,其中 HER2-Fc 嵌合体和参考分子被生物缀合,并以多路复用方式进行监测。通过结合无标记和荧光检测分析,我们能够调整测定的参数,并在不到 20 分钟的时间内在人血浆中进行 HER2 检测,从而实现具有成本效益的测定和快速周转时间。该方法提供了一种有前途的技术,能够对疾病的诊断和治疗监测进行无标记和荧光联合检测。

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