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基于光子晶体表面模式成像的无标记多重微流控蛋白质相互作用分析。

Label-Free Multiplexed Microfluidic Analysis of Protein Interactions Based on Photonic Crystal Surface Mode Imaging.

机构信息

Laboratoire de Recherche en Nanosciences, LRN-EA4682, Structure Fédérative de Recherche Cap Santé, UFR de Pharmacie, Université de Reims Champagne-Ardenne, 51100 Reims, France.

Laboratory of Nano-Bioengineering, Moscow Engineering Physics Institute, National Research Nuclear University MEPhI, 115522 Moscow, Russia.

出版信息

Int J Mol Sci. 2023 Feb 22;24(5):4347. doi: 10.3390/ijms24054347.

Abstract

High-throughput protein assays are crucial for modern diagnostics, drug discovery, proteomics, and other fields of biology and medicine. It allows simultaneous detection of hundreds of analytes and miniaturization of both fabrication and analytical procedures. Photonic crystal surface mode (PC SM) imaging is an effective alternative to surface plasmon resonance (SPR) imaging used in conventional gold-coated, label-free biosensors. PC SM imaging is advantageous as a quick, label-free, and reproducible technique for multiplexed analysis of biomolecular interactions. PC SM sensors are characterized by a longer signal propagation at the cost of a lower spatial resolution, which makes them more sensitive than classical SPR imaging sensors. We describe an approach for designing label-free protein biosensing assays employing PC SM imaging in the microfluidic mode. Label-free, real-time detection of PC SM imaging biosensors using two-dimensional imaging of binding events has been designed to study arrays of model proteins (antibodies, immunoglobulin G-binding proteins, serum proteins, and DNA repair proteins) at 96 points prepared by automated spotting. The data prove feasibility of simultaneous PC SM imaging of multiple protein interactions. The results pave the way to further develop PC SM imaging as an advanced label-free microfluidic assay for the multiplexed detection of protein interactions.

摘要

高通量蛋白质分析对于现代诊断学、药物发现、蛋白质组学和其他生物学和医学领域至关重要。它允许同时检测数百种分析物,并使制造和分析程序小型化。光子晶体表面模式(PC SM)成像是传统金涂层、无标记生物传感器中使用的表面等离子体共振(SPR)成像的有效替代方法。PC SM 成像作为一种快速、无标记和可重复的生物分子相互作用的多路复用分析技术具有优势。PC SM 传感器的特点是信号传播时间更长,但空间分辨率较低,这使得它们比传统的 SPR 成像传感器更灵敏。我们描述了一种在微流控模式下使用 PC SM 成像设计无标记蛋白质生物传感分析的方法。设计了无标记、实时检测 PC SM 成像生物传感器,通过二维结合事件成像来研究通过自动点样制备的 96 个点的模型蛋白(抗体、免疫球蛋白 G 结合蛋白、血清蛋白和 DNA 修复蛋白)阵列。这些数据证明了同时进行多种蛋白质相互作用的 PC SM 成像的可行性。研究结果为进一步开发 PC SM 成像作为一种先进的无标记微流控分析方法,用于蛋白质相互作用的多路复用检测铺平了道路。

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