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一步法配体固定化和单一样品注射用于免再生表面等离子体共振测量生物分子相互作用。

One-Step Ligand Immobilization and Single Sample Injection for Regeneration-Free Surface Plasmon Resonance Measurements of Biomolecular Interactions.

机构信息

College of Chemistry and Chemical Engineering, Central South University , Changsha, Hunan, P. R. China , 410083.

Department of Chemistry and Biochemistry, California State University, Los Angeles , Los Angeles, California 90032, United States.

出版信息

Anal Chem. 2017 Mar 21;89(6):3261-3265. doi: 10.1021/acs.analchem.7b00121. Epub 2017 Mar 3.

Abstract

Surface plasmon resonance (SPR) has been well established as a method of choice for label-free kinetic measurements of biomolecular interactions. The conventional approach involves multiple injections of an analyte of different concentrations into a fluidic channel covered with a fixed ligand density. Optimization of the experimental conditions and assessment of the data quality can be complicated by issues such as disruption of the ligand structure by the regeneration step and the limited availability of the sample solution. By sequentially closing fluidic channels on a five-channel SPR instrument, different densities of a ligand can be immobilized and determined in one step. With a subsequent injection of a single sample solution, SPR sensorgrams can be simultaneously collected to yield binding and dissociation rate constants (k and k) and dissociation constant (K) between the ligand and analyte. For biomolecular interactions that obey the Langmuir isotherm, we show that the fidelity of the kinetic data can only be reliably confirmed when there exists a strong linear correlation between the SPR signals and the ligand densities. The use of a multichannel SPR instrument also obviates the regeneration step, allowing the binding kinetics between the green fluorescent protein and its antibody to be measured. In comparison to the conventional approach, the method simplifies the experimental procedure, reduces costs associated with sensor chips and biological samples, expedites kinetic measurements, and allows affinity constants to be determined more straightforwardly.

摘要

表面等离子体共振(SPR)已被广泛应用于生物分子相互作用的无标记动力学测量方法。传统方法涉及将不同浓度的分析物多次注入到覆盖有固定配体密度的流道中。实验条件的优化和数据质量的评估可能会受到一些问题的影响,例如再生步骤会破坏配体结构以及样品溶液的有限可用性。通过在五通道 SPR 仪器上顺序关闭流道,可以在一步中固定和确定不同密度的配体。随后注入单个样品溶液,可以同时收集 SPR 传感器图,以获得配体和分析物之间的结合和解离速率常数(k 和 k)和解离常数(K)。对于符合朗缪尔等温线的生物分子相互作用,我们表明,只有当 SPR 信号与配体密度之间存在强线性相关时,才能可靠地确认动力学数据的保真度。多通道 SPR 仪器的使用还消除了再生步骤,允许测量绿色荧光蛋白与其抗体之间的结合动力学。与传统方法相比,该方法简化了实验程序,降低了传感器芯片和生物样品相关的成本,加快了动力学测量速度,并使亲和力常数的确定更加直接。

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