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Molecular Modelling in Biosensor Desgin for Cholera Toxin Detection

机译:生物传感器设计中霍乱毒素检测的分子建模

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In undevelped countries waterborn epidemics are significantly threatening for health. Cholera is one of the main such diseases. For the initiation of preventive health care services, studies for designing biosensors that detects the cholera toxin which is the cause of this disease is necessary. Besides the experiments performed during the design which uses SPR and SPFS technology, usage of computational biology takes an important place. Investigation of the binding mechanisms taking place in the biosensor is possible at the atomistic scales by molecular modelling techniques and this going to be a preliminary work for the similar biosensor designs. In this research, ligands enable the detection by ensuring the specific binding of cholera toxin B (Ch B) were determined by the computation of binding energies and binding positions and interactions were investigated.
机译:在未开发的国家中,水源性流行病严重威胁健康。霍乱是主要的此类疾病之一。为了启动预防保健服务,有必要进行研究以设计出检测引起霍乱毒素的生物传感器,霍乱毒素是造成该疾病的原因。除了在设计过程中使用SPR和SPFS技术进行的实验之外,计算生物学的使用也占有重要地位。通过分子建模技术,有可能在原子尺度上研究生物传感器中发生的结合机制,这将是类似生物传感器设计的初步工作。在这项研究中,配体通过确保通过计算结合能来确定霍乱毒素B(Ch B)的特异性结合,从而能够进行检测,并对结合位置和相互作用进行了研究。

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