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利用脱水静滴法在蛋白质与混合盐溶液中形成复杂图案

Complex Pattern Formation in Solutions of Protein and Mixed Salts Using Dehydrating Sessile Droplets.

作者信息

Pathak Binita, Christy John, Sefiane Khellil, Gozuacik Devrim

机构信息

Department of Mechanical Engineering, Indian Institute of Technology, BHU, Varanasi 221005, India.

School of Engineering, The University of Edinburgh, Kings Buildings, Edinburgh EH9 3JL, United Kingdom.

出版信息

Langmuir. 2020 Aug 25;36(33):9728-9737. doi: 10.1021/acs.langmuir.0c01122. Epub 2020 Aug 12.

Abstract

A sessile droplet of a complex fluid exhibits several stages of drying leading to the formation of a final pattern on the substrate. We report such pattern formation in dehydrating droplets of protein (BSA) and salts (MgCl and KCl) at various concentrations of the two components (protein and salts) as part of a parametric study for the understanding of complex patterns of dehydrating biofluid droplets (blood and urine), which will eventually be used for diagnosis of bladder cancer. The exact analysis of the biofluid patterns will require a rigorous parametric study; however, the current work provides an initial understanding of the effect of the basic components present in a biofluid droplet. Arrangement of the protein and the salts, due to evaporation, leads to the formation of some very distinctive final structures at the end of the droplet lifetime. Furthermore, these structures can be manipulated by varying the initial ratio of the two components in the solution. MgCl forms chains of crystals beyond a threshold initial concentration of protein (>3 wt %). However, the formation of such a crystal is also limited by the maximum concentration of the salt initially present in the droplet (≤1 wt %). On the other hand, KCl forms dendritic and rectangular crystals in the presence of BSA. The formation of these crystals also depends on the relative concentration of salt and protein in the droplet. We also investigated the dried-out patterns in dehydrating droplets of mixed salts (MgCl + KCl) and protein. The patterns can be tuned from a continuous dendritic structure to a snow-flake type structure just by altering the initial ratio of the two salts in the mixture, keeping all other parameters constant.

摘要

复杂流体的静态液滴在干燥过程中会经历几个阶段,最终在基底上形成一种最终图案。我们报告了在不同浓度的蛋白质(牛血清白蛋白,BSA)和盐(氯化镁和氯化钾)脱水液滴中形成的这种图案,这是作为参数研究的一部分,旨在了解脱水生物流体液滴(血液和尿液)的复杂图案,这些图案最终将用于膀胱癌的诊断。对生物流体图案进行精确分析需要进行严格的参数研究;然而,目前的工作初步了解了生物流体液滴中基本成分的影响。由于蒸发,蛋白质和盐的排列在液滴寿命结束时会导致形成一些非常独特的最终结构。此外,可以通过改变溶液中两种成分的初始比例来操纵这些结构。当蛋白质的初始浓度超过阈值(>3 wt%)时,氯化镁会形成晶体链。然而,这种晶体的形成也受到液滴中最初存在的盐的最大浓度(≤1 wt%)的限制。另一方面,在牛血清白蛋白存在的情况下,氯化钾会形成树枝状和矩形晶体。这些晶体的形成也取决于液滴中盐和蛋白质的相对浓度。我们还研究了混合盐(氯化镁 + 氯化钾)和蛋白质脱水液滴中的干燥图案。只需改变混合物中两种盐的初始比例,同时保持所有其他参数不变,图案就可以从连续的树枝状结构调整为雪花状结构。

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