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Analysis of adsorbed proteins by static time-of-flight secondary ion mass spectrometry

机译:静态飞行时间二次离子质谱分析吸附蛋白

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Adsorbed and immobilized proteins play an important role in a variety of biological phenomena of industrial importance. Protein adsorption onto solid surfaces significantly alters subsequent biological responses to the surface. Proteins at solid-liquid interfaces can therefore be exploited to design surfaces that influence or direct the response of the biological environment. Several analytical tools have been applied to examine the state of the adsorbed proteins, that is, their identity, concentration, conformation, orientation, and spatial distribution. These characteristics play important roles in the biological response to solid surfaces. This article reviews the application of time-of-flight secondary ion mass spectrometry (ToF-SIMS) for characterizing the state of adsorbed protein films. Due to the analytical power of this technique, ToF-SIMS provides wealth of information on the state of the adsorbed proteins. The capabilities and limitations of ToF-SIMS for examining the state of adsorbed proteins will be discussed along with future directions for using this technique to characterize adsorbed and immobilized proteins.
机译:吸附和固定化的蛋白质在各种具有重要工业价值的生物学现象中起着重要作用。蛋白质吸附到固体表面上会显着改变随后对表面的生物学反应。因此,可以利用固液界面的蛋白质来设计影响或指导生物环境响应的表面。已经应用了几种分析工具来检查吸附蛋白的状态,即它们的身份,浓度,构象,方向和空间分布。这些特征在对固体表面的生物反应中起重要作用。本文回顾了飞行时间二次离子质谱(ToF-SIMS)在表征蛋白质吸附膜状态中的应用。由于该技术的分析能力,ToF-SIMS提供了大量有关吸附蛋白状态的信息。将讨论ToF-SIMS检测吸附蛋白状态的能力和局限性,以及使用该技术表征吸附和固定蛋白的未来方向。

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