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Surface plasmon resonance phase-shift interferometry: real-time microarray biomolecular interaction analysis

机译:表面等离子体共振相移干扰法:实时微阵列生物分子相互作用分析

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摘要

A novel surface plasmon resonance (SPR) imaging system based on modified Mach-Zehnder phase-shifting interferometry (PSI) measures the spatial phase variation of a resonantly reflected light in biomolecular interaction. In this technique, the SPR DNA microarray can diagnose the target DNA without additional labeling in real-time biomolecular interaction analysis (BIA). Owing to the feasible and swift measurements, the SPR microarray with this SPR imaging system can be extensively applied to the nonspecific adsorption of protein, the membrane-protein interaction, receptor-ligand interaction, DNA hybridization. The detection limitation of the SPR PSI imaging system is improved to about 1 pg/mm~2 surface coverage of biomaterial for each individual spot over that of the conventional SPR imaging system that observe the intensity variation of a resonantly reflected light. The SPR PSI imaging system and its SPR microarray can provide the capability to analyze DNA hybridization or protein interaction in real-time, with high resolution, and at high-throughout screening rates.
机译:基于改进的马赫 - 曾德尔相移干涉(PSI)一种新颖的表面等离子体共振(SPR)的成像系统的措施,生物分子相互作用一个共振反射光的空间相位的变化。在该技术中,SPR DNA微阵列可以诊断无需实时生物分子相互作用分析额外的标签(BIA)的靶DNA。由于可行和迅速的测量,与此SPR成像系统中的SPR微阵列可被广泛应用于蛋白,膜 - 蛋白质相互作用,受体 - 配体相互作用,DNA杂交的非特异性吸附。的SPR PSI成像系统的检测限制是提高到约1皮克/毫米的生物材料〜2的表面覆盖了超过其的是观察到共振反射光的强度变化的常规SPR成像系统中的每个单独的点。该SPR PSI成像系统和它的SPR芯片可以提供分析DNA杂交或蛋白质相互作用的实时,高分辨率的能力,并且在高通量筛查率。

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