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生物传感器的抗原-抗体扩散限制结合动力学。分形分析。

Antigen-antibody diffusion-limited binding kinetics for biosensors. A fractal analysis.

作者信息

Sadana A, Beelaram A M

机构信息

Chemical Engineering Department, University of Mississippi, University 38677-9740, USA.

出版信息

Appl Biochem Biotechnol. 1996 Jun;59(3):259-82. doi: 10.1007/BF02783569.

Abstract

A fractal analysis is made for antigen-antibody binding kinetics for different biosensor applications available in the literature. Both types of examples are considered wherein: (1) the antigen is in solution and the antibody is immobilized on the fiberoptic surface, and (2) the antibody is in solution and the antigen is immobilized on the fiberoptic surface. For example, when the antibody is immobilized on the surface, an increase in the antigen Clostridium botulinum toxin A concentration in solution leads to (1) a decrease in the fractal dimension value or state of disorder, and (2) a higher rate constant for binding on the fiberoptic surface. An analysis of the effect of the influence of different parameters on the fractal dimension values for a particular example, such as varying treatments or incubation procedures, helps provide insights into the conformational states and reactions occurring on the fiberoptic surface. The analysis of the different example taken together provides novel physical insights into the state of "disorder" and reactions occurring on the surface. Such types of analysis should help contribute toward manipulating the reactions occurring on the fiberoptic surfaces in desired directions.

摘要

对文献中可用的不同生物传感器应用的抗原 - 抗体结合动力学进行了分形分析。考虑了两种类型的示例,其中:(1)抗原在溶液中,抗体固定在光纤表面;(2)抗体在溶液中,抗原固定在光纤表面。例如,当抗体固定在表面时,溶液中肉毒杆菌毒素A抗原浓度的增加会导致:(1)分形维数值或无序状态降低;(2)在光纤表面结合的速率常数更高。对特定示例(如不同处理或孵育程序)中不同参数对分形维数值的影响进行分析,有助于深入了解光纤表面发生的构象状态和反应。综合对不同示例的分析,为表面发生的“无序”状态和反应提供了新的物理见解。此类分析应有助于推动按期望方向操纵光纤表面发生的反应。

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