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首页> 外文期刊>Analytical chemistry >Nanohole-Based Surface Plasmon Resonance Instruments with Improved Spectral Resolution Quantify a Broad Range of Antibody-Ligand Binding Kinetics
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Nanohole-Based Surface Plasmon Resonance Instruments with Improved Spectral Resolution Quantify a Broad Range of Antibody-Ligand Binding Kinetics

机译:具有改进的光谱分辨率的基于纳米孔的表面等离振子共振仪器可量化广泛的抗体-配体结合动力学。

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We demonstrate an affordable low-noise surface plasmon resonance (SPR) instrument based on extraordinary optical transmission (EOT) in metallic nanohole arrays and quantify a broad range of antibody-ligand binding kinetics with equilibrium dissociation constants ranging from 200 pM to 40 nM. This nanohole-based SPR instrument is straightforward to construct, align, and operate, since it is built around a standard microscope and a portable fiber-optic spectrometer. The measured refractive index resolution of this platform is 3.1 X 10~(-6) without on-chip cooling, which is among the lowest reported for SPR sensors based on EOT. This is accomplished via rapid full-spectrum acquisition in 10 ms followed by frame averaging of the EOT spectra, which is made possible by the production of template-stripped gold nanohole arrays with homogeneous optical properties over centimeter-sized areas. Sequential SPR measurements are performed using a 12-channel microfluidic flow cell after optimizing surface modification protocols and antibody injection conditions to minimize mass-transport artifacts. The immobilization of a model ligand, the protective antigen of anthrax on the gold surface, is monitored in real-time with a signal-to-noise ratio of approx860. Subsequently, real-time binding kinetic curves were measured quantitatively between the antigen and a panel of small, 25 kDa single-chain antibodies at concentrations down to 1 nM. These results indicate that nanohole-based SPR instruments have potential for quantitative antibody screening and as a general-purpose platform for integrating SPR sensors with other bioanalytical tools.
机译:我们展示了一种基于金属纳米孔阵列中非同寻常的光传输(EOT)的价格合理的低噪声表面等离子体共振(SPR)仪器,并定量了范围广泛的抗体-配体结合动力学,平衡解离常数范围为200 pM至40 nM。这种基于纳米孔的SPR仪器是围绕标准显微镜和便携式光纤光谱仪构建的,因此可以轻松构建,对准和操作。在没有片上冷却的情况下,该平台测得的折射率分辨率为3.1 X 10〜(-6),是基于EOT的SPR传感器报告的最低分辨率之一。这可以通过在10毫秒内快速进行全光谱采集,然后对EOT光谱进行帧平均来实现,这可以通过生产模板剥离的金纳米孔阵列来实现,该阵列在厘米大小的区域上具有均匀的光学特性。在优化表面修饰方案和抗体注射条件以最大程度地减少质量传递伪影之后,使用12通道微流体流通池进行顺序SPR测量。模型配体(炭疽的保护性抗原)在金表面的固定化以大约860的信噪比实时监控。随后,以低至1 nM的浓度定量测量了抗原与一组25 kDa的单链抗体之间的实时结合动力学曲线。这些结果表明,基于纳米孔的SPR仪器具有用于定量抗体筛选的潜力,并且是将SPR传感器与其他生物分析工具整合在一起的通用平台。

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