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首页> 外文期刊>Analytical chemistry >Development of a 'membrane cloaking' method for amperometric enzyme immunoassay and surface plasmon resonance analysis of proteins in serum samples
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Development of a 'membrane cloaking' method for amperometric enzyme immunoassay and surface plasmon resonance analysis of proteins in serum samples

机译:建立“膜隐蔽”方法进行安培酶免疫测定和血清样品中蛋白质的表面等离子体共振分析

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Detection of trace amounts of target proteins in the presence of high concentrations of matrix proteins (e.g., serum samples) without separation steps is of great significance to biomedical research but remains technically challenging. Here we report a "membrane cloaking" method to overcome nonspecific protein adsorption and fouling problems for label-free surface plasmon resonance detection and heterogeneous immunosensing. A thin, hybrid, self-assembled monolayer on gold was formed with 70 mol % mercaptopropanol and 30 mol % cysteamine/propanedithiol to facilitate membrane fusion and covalent attachment of antibodies. After antibody immobilization, the surface was incubated with lipid vesicles, which fused to form a supported membrane. The analyte spiked in serum was introduced for binding, and the membrane and nonspecifically adsorbed proteins on the membrane were subsequently removed using a nonionic surfactant before the final measurement was carried out. Selection of a suitable surfactant can preserve antibody/antigen binding and selectively remove the membrane, allowing accurate measurement of the captured proteins without interference from nonspecifically adsorbed species. Surface plasmon resonance (SPR) quantification of IgG spiked in undiluted serum (similar to 75 mg/mL protein) was achieved with the membrane cloaking method, whereas direct measurement without membrane removal resulted in a significantly large error. The cloaking method was also used to develop an enzyme amplified amperometric assay using HRP-conjugated IgG. Detection of concentrations as low as 5 fM proteins was obtained. Finally, a membrane cloaking assay combining SPR and in situ electrochemical measurement was demonstrated on a gold substrate. Similar sensitivity was observed using a continuous flow injection measurement. The method opens new avenues to develop direct assay methods with ultrahigh sensitivity for protein samples using SPR and enzyme-linked amplification mechanisms.
机译:在没有分离步骤的情况下,在存在高浓度基质蛋白(例如血清样品)的情况下检测痕量的靶蛋白对生物医学研究具有重要意义,但在技术上仍然具有挑战性。在这里,我们报告了一种“膜掩盖”方法,以克服非特异性蛋白质吸附和结垢问题,从而实现无标记的表面等离振子共振检测和异质免疫传感。用70 mol%的巯基丙醇和30 mol%的半胱胺/丙​​二酚在金上形成一层薄的,杂化的,自组装的单层膜,以促进膜融合和抗体的共价结合。固定抗体后,将表面与脂质囊泡温育,脂质囊泡融合形成支撑膜。引入掺入血清的分析物进行结合,随后在进行最终测量之前,使用非离子表面活性剂去除膜和膜上非特异性吸附的蛋白质。选择合适的表面活性剂可以保留抗体/抗原结合并选择性去除膜,从而可以准确测量捕获的蛋白质,而不会受到非特异性吸附物质的干扰。用膜隐蔽法实现了未稀释血清(类似于75 mg / mL蛋白)中加标的IgG的表面等离子体共振(SPR)定量,而没有膜去除的直接测量导致明显的大误差。隐蔽方法还用于开发使用HRP缀合IgG的酶放大安培分析。获得了低至5 fM蛋白的浓度检测。最后,在金基底上证明了结合SPR和原位电化学测量的膜掩盖试验。使用连续流动注射测量观察到相似的灵敏度。该方法为开发使用SPR和酶联扩增机制对蛋白质样品具有超高灵敏度的直接测定方法开辟了新途径。

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