How Charge Regulation Affects pH-Responsive Ampholyte Uptake in Weak Polyelectrolyte Brushes

IF 5.1 1区 化学 Q1 POLYMER SCIENCE Macromolecules Pub Date : 2024-12-16 DOI:10.1021/acs.macromol.4c01838
Keerthi Radhakrishnan, David Beyer, Christian Holm
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Abstract

Weak polyelectrolyte brushes are a promising platform for the selective capture and release of charged proteins from bulk solutions. Despite their potential for creating smart responsive surfaces, a detailed microscopic understanding of the uptake behavior in dependence of various parameters remains elusive. In this study, we employ coarse-grained, particle-based simulations to investigate how charge regulation under varying environmental conditions modulate the uptake and release of pH-responsive ampholytes, serving as a toy model for proteins, into weak polyelectrolyte brushes. For quenched brushes with constant ionization, the uptake of ampholytes remains strong across different isoelectric points. In contrast, for weak brushes, the ampholyte uptake becomes selectively sensitive to different isoelectric points and pKA-values and exhibits a nonmonotonic behavior with changing pH. Enhanced proton partitioning into the brush lowers the local pH, significantly shifting the ionization states of both the brush (pKAapp > pKA) and ampholytes (pIapp > pI), such that the concurrent ionization of the brush and the ampholyte results in an optimum uptake strength for pKAapp < pH < pIapp. Adjusting the salt concentration broadens the uptake window and shifts the maximum uptake to higher pH values. Additionally, ampholytes with higher charge regulation capacitance near the isoelectric point demonstrate stronger adsorption, extending selective adsorption capabilities in ampholyte mixtures with similar isoelectric points.

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弱聚合电解质刷是从大量溶液中选择性捕获和释放带电蛋白质的一个前景广阔的平台。尽管它们具有创造智能响应表面的潜力,但人们仍无法从微观上详细了解它们的吸收行为与各种参数的关系。在这项研究中,我们采用了基于粒子的粗粒度模拟,研究在不同环境条件下电荷调节如何调节作为蛋白质玩具模型的 pH 响应两性溶质对弱聚电解质刷的吸收和释放。对于电离度恒定的淬火电刷,在不同等电点上对两性溶质的吸收仍然很强。相反,对于弱电刷,两性溶解物的吸收对不同的等电点和 pKA 值变得选择性敏感,并随着 pH 值的变化表现出非单调行为。质子在电刷中的分配增强会降低局部 pH 值,从而显著改变电刷(pKAapp > pKA)和两性溶质(pIapp > pI)的电离状态,这样电刷和两性溶质的同时电离会导致 pKAapp < pH < pIapp 的最佳吸收强度。调整盐浓度可拓宽吸收窗口,并将最大吸收量转移到较高的 pH 值。此外,等电点附近电荷调节电容较高的两性溶液具有更强的吸附力,从而扩展了具有相似等电点的两性溶液混合物的选择性吸附能力。
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来源期刊
Macromolecules
Macromolecules 工程技术-高分子科学
CiteScore
9.30
自引率
16.40%
发文量
942
审稿时长
2 months
期刊介绍: Macromolecules publishes original, fundamental, and impactful research on all aspects of polymer science. Topics of interest include synthesis (e.g., controlled polymerizations, polymerization catalysis, post polymerization modification, new monomer structures and polymer architectures, and polymerization mechanisms/kinetics analysis); phase behavior, thermodynamics, dynamic, and ordering/disordering phenomena (e.g., self-assembly, gelation, crystallization, solution/melt/solid-state characteristics); structure and properties (e.g., mechanical and rheological properties, surface/interfacial characteristics, electronic and transport properties); new state of the art characterization (e.g., spectroscopy, scattering, microscopy, rheology), simulation (e.g., Monte Carlo, molecular dynamics, multi-scale/coarse-grained modeling), and theoretical methods. Renewable/sustainable polymers, polymer networks, responsive polymers, electro-, magneto- and opto-active macromolecules, inorganic polymers, charge-transporting polymers (ion-containing, semiconducting, and conducting), nanostructured polymers, and polymer composites are also of interest. Typical papers published in Macromolecules showcase important and innovative concepts, experimental methods/observations, and theoretical/computational approaches that demonstrate a fundamental advance in the understanding of polymers.
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