Are Hofmeister Series Relevant to Modern Ion-Specific Effects Research?

T. Evens, R. Niedz
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引用次数: 23

Abstract

Ion-specific effects underlie a vast array of physicochemical and biological phenomena ranging from human physiology to biotechnology to ecology. These effects have traditionally been quantified by measuring the response of interest in a series of salt solutions at multiple concentrations; pH has consistently been shown to be of primary concern. However, salt-based approaches violate critical tenets of proper experimental design and introduce confounding errors that make it impossible to quantify ion-specific effects. For example, pH is a variable dependent on the type and concentration of ions in a solution, but is typically treated as an independent factor, thus confounding experiments designed to determine ion-specific effects. We examined the relevancy of ion-specific effects research in relation to these concepts and demonstrated how these ideas impact protein precipitation and enzyme activity. Based on these results, we present a conceptual and experimental framework of general applicability for proper quantification of ion-specific effects.
霍夫迈斯特系列与现代离子特异性效应研究相关吗?
离子特异性效应是一系列物理化学和生物现象的基础,从人体生理学到生物技术再到生态学。传统上,这些效应是通过测量在一系列不同浓度的盐溶液中的反应来量化的;pH值一直被认为是首要考虑的因素。然而,基于盐的方法违反了适当实验设计的关键原则,并引入了混淆误差,使离子特异性效应无法量化。例如,pH值是一个依赖于溶液中离子类型和浓度的变量,但通常被视为一个独立因素,从而混淆了旨在确定离子特异性效应的实验。我们研究了与这些概念相关的离子特异性效应研究的相关性,并展示了这些想法如何影响蛋白质沉淀和酶活性。基于这些结果,我们提出了一个概念和实验框架,一般适用于适当量化离子特异性效应。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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