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Fractal Binding and Dissociation Kinetics of Lecithin Cholesterol Acyl Transferase (LCAT) (a heart-related compound) on Biosensor Surfaces

机译:卵磷脂胆固醇酰基转移酶(LCAT)(一种与心脏有关的化合物)在生物传感器表面的分形结合和离解动力学

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A fractal analysis is presented for the binding and dissociation of different heart-related compounds in solution to receptors immobilized on biosensor surfaces. The data analyzed include LCAT (lecithin cholesterol acyl transferase) concentrations in solution to egg-white apoA-I rHDL immobilized on a biosensor chip surface. Single- and dual-fractal models were employed to fit the data. Values of the binding and the dissociation rate coefficient(s), affinity values, and the fractal dimensions were obtained from the regression analysis provided by Corel Quattro Pro 8.0 (Corel Corporation Limited). The binding rate coefficients are quite sensitive to the degree of heterogeneity on the sensor chip surface. Predictive equations are developed for the binding rate coefficient as a function of the degree of heterogeneity present on the sensor chip surface and on the LCAT concentration in solution, and for the affinity as a function of the ratio of fractal dimensions present in the binding and the dissociation phases. The analysis presented provided physical insights into these analyte-receptor reactions occurring on different biosensor surfaces.
机译:分形分析显示了溶液中不同的心脏相关化合物与固定在生物传感器表面的受体的结合和解离。分析的数据包括固定在生物传感器芯片表面的蛋清apoA-I rHDL溶液中的LCAT(卵磷脂胆固醇酰基转移酶)浓度。采用单分形和双分形模型拟合数据。结合和解离速率系数,亲和力值和分形维数的值是从Corel Quattro Pro 8.0(Corel Corporation Limited)提供的回归分析中获得的。结合速率系数对传感器芯片表面上的异质程度非常敏感。对于结合速率系数,它是根据传感器芯片表面上存在的异质程度和溶液中LCAT浓度的函数,对于亲和力,是随着结合中存在的分形维数的比例而变化的预测方程。解离阶段。提出的分析提供了对不同生物传感器表面上发生的这些分析物-受体反应的物理见解。

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