首页> 外文期刊>Journal of molecular recognition: JMR >Online optimization of surface plasmon resonance-based biosensor experiments for improved throughput and confidence.
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Online optimization of surface plasmon resonance-based biosensor experiments for improved throughput and confidence.

机译:在线优化基于表面等离振子共振的生物传感器实验,以提高通量和置信度。

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摘要

The emergence of surface plasmon resonance-based optical biosensors has facilitated the identification of kinetic parameters for various macromolecular interactions. Normally, these parameters are determined from experiments with arbitrarily chosen periods of macromolecule and buffer injections, and varying macromolecule concentrations. Since the choice of these variables is arbitrary, such experiments may not provide the required confidence in identified kinetic parameters expressed in terms of standard errors. In this work, an iterative optimization approach is used to determine the above-mentioned variables so as to reduce the experimentation time, while treating the required standard errors as constraints. It is shown using multiple experimental and simulated data that the desired confidence can be reached with much shorter experiments than those generally performed by biosensor users.
机译:基于表面等离子体共振的光学生物传感器的出现促进了各种大分子相互作用的动力学参数的识别。通常,这些参数是根据具有任意选择的大分子和缓冲液注入时间以及变化的大分子浓度的实验确定的。由于这些变量的选择是任意的,因此此类实验可能无法提供以标准误差表示的确定的动力学参数所需的置信度。在这项工作中,使用迭代优化方法来确定上述变量,以减少实验时间,同时将所需的标准误差作为约束条件。使用多个实验和模拟数据表明,与生物传感器用户通常进行的实验相比,用短得多的实验可以达到所需的置信度。

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