Microstamp patterning of protein arrays

M. Nasabi, A. Mitchell, K. Kalantar-zadeh, W. Nesbitt
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引用次数: 1

Abstract

Pathological thrombus formation is initiated by the interaction of blood platelets to immobilized proteins at the vessel wall. Platelet surface adhesion leads to biochemical activation and structural reorganization resulting in spreading of the platelet across the adhesive surface. Extensive studies have been carried out to examine platelet spreading responses on continuous substrates but little is known about the impact of protein surface distribution on platelet function. This paper describes the development of a micro-contact printing technique to establish defined 2-dimensional arrays of the thrombogenic protein fibrinogen at the surface of glass substrates, with the aim of investigating the impact of protein surface distribution on platelet biochemical signaling events associated with the adhesion/spreading process.
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蛋白质阵列的微戳图型
病理性血栓形成是由血小板与血管壁固定蛋白的相互作用引起的。血小板表面粘附导致生化激活和结构重组,导致血小板在粘附表面扩散。已经开展了大量研究来检测血小板在连续底物上的扩散反应,但对蛋白质表面分布对血小板功能的影响知之甚少。本文描述了一种微接触打印技术的发展,用于在玻璃基板表面建立血栓形成蛋白纤维蛋白原的二维阵列,目的是研究蛋白质表面分布对血小板粘附/扩散过程相关的生化信号事件的影响。
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