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Enantioselective sensors based on antibody-mediated nanomechanics

机译:基于抗体介导的纳米力学的对映选择性传感器

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The use of microfabricated cantilevers as bioaffinity sensors was investigated. Since many bioaffinity interactions involve proteins as receptors, we conducted studies of the magnitude, kinetics, and reversibility of surface stresses caused when common proteins interact with microcantilevers (MCs) with nanostructured (roughened) gold surfaces on one side. Exposure of nanostructured, unfunctionalized MCs to the proteins immunoglobulin G and bovine serum albumin (BSA) resulted in reversible large tensile stresses, whereas MCs with smooth gold surfaces on one side produced reversible responses that were considerably smaller and compressive. The response magnitude for nanostructured MCs exposed to BSA is shown to be concentration dependent, and linear calibration over the range of 1-200 mg/L is demonstrated. Stable, reusable protein bioaffinity phases based on unique enantioselective antibodies are created by co-valently linking monoclonal antibodies to nanostructured MC surfaces. The direct (label-free) stereoselective detection of trace amounts of an important class of chiral analytes, the a-amino acids, was achieved based on immunomechanical responses involving nanoscale bending of the cantilever. The temporal response of the cantilever (Delta deflection/Delta time) is linearly proportional to the analyte concentration and allows the quantitative determination of enantiomeric purity up to an enantiomeric excess of 99.8%. To our knowledge, this is the first demonstration of chiral discrimination using highly scalable microelectromechanical systems. [References: 34]
机译:研究了微型悬臂作为生物亲和传感器的用途。由于许多生物亲和力相互作用都涉及蛋白质作为受体,因此我们对常见蛋白质与一侧具有纳米结构(粗糙)金表面的微悬臂梁(MC)相互作用时引起的表面应力的大小,动力学和可逆性进行了研究。纳米结构,未官能化的MCs暴露于蛋白质免疫球蛋白G和牛血清白蛋白(BSA),导致可逆的大拉应力,而一侧光滑的金表面的MCs产生的可逆反应小得多且受压。暴露于BSA的纳米结构MC的响应幅度显示为浓度依赖性,并证明了在1-200 mg / L范围内的线性校准。通过将单克隆抗体与纳米结构的MC表面共价连接,可以创建基于独特对映选择性抗体的稳定,可重复使用的蛋白质生物亲和相。基于涉及悬臂的纳米级弯曲的免疫机械反应,实现了痕量的一类重要的手性分析物痕量的直接(无标记)立体选择性检测。悬臂的时间响应(Δ挠度/Δ时间)与分析物浓度成线性比例,并允许对映体纯度的定量测定,直至对映体过量达到99.8%。据我们所知,这是使用高度可扩展的微机电系统进行手性识别的第一个证明。 [参考:34]

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