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控制多孔介质中两亲聚合物水相体系的宏观相分离。

Controlling Macroscopic Phase Separation of Aqueous Two-Phase Polymer Systems in Porous Media.

机构信息

Department of Bioengineering, University of California, Los Angeles, CA, USA.

Division of Advanced Prosthodontics & Weintraub Center for Reconstructive Biotechnology, School of Dentistry, University of California, Los Angeles, CA, USA.

出版信息

SLAS Technol. 2019 Oct;24(5):515-526. doi: 10.1177/2472630319861369. Epub 2019 Jul 30.

Abstract

In previous work, our group discovered a phenomenon in which a mixed polymer-salt or mixed micellar aqueous two-phase system (ATPS) separates into its two constituent phases as it flows within paper. While these ATPSs worked well in their respective studies to concentrate the target biomarker and improve the sensitivity of the lateral-flow immunoassay, different ATPSs can be advantageous for new applications based on factors such as biomarker partitioning or biochemical compatibility between ATPS and sample components. However, since the mechanism of phase separation in porous media is not completely understood, introducing other ATPSs to paper is an unpredictable process that relies on trial and error experiments. This is especially true for polymer-polymer ATPSs in which the characteristics of the two phases appear quite similar. Therefore, our group aimed to develop semiquantitative guidelines for choosing ATPSs that can phase separate in paper. In this work, we evaluated the Washburn equation and its parameters as a potential mathematical framework to describe the flow behavior of polymer-salt and micellar ATPSs in fiberglass paper. We compared bulk phase fluid characteristics and identified the viscosity difference between the phases as a key determinant of the potential for phase separation in paper. We then used this parameter to predict the phase separation capabilities of polyethylene glycol (PEG)-dextran ATPSs in paper and control the composition of the leading and lagging phases. We also, for the first time, successfully demonstrated the phase separation phenomenon in hydrogels, thereby extending its application and potential benefits to an alternative porous medium.

摘要

在之前的工作中,我们小组发现了一种现象,即混合聚合物-盐或混合胶束双水相体系(ATPS)在流经纸张时会分离成其两个组成相。虽然这些 ATPS 在各自的研究中很好地浓缩了目标生物标志物并提高了侧流免疫分析的灵敏度,但不同的 ATPS 可以基于生物标志物分配或 ATPS 与样品成分之间的生化相容性等因素为新应用带来优势。然而,由于多孔介质中相分离的机制尚未完全理解,因此将其他 ATPS 引入纸张是一个不可预测的过程,需要依靠反复试验。对于聚合物-聚合物 ATPS 来说尤其如此,因为两相的特性似乎非常相似。因此,我们小组旨在开发半定量指南,以选择可以在纸张中相分离的 ATPS。在这项工作中,我们评估了 Washburn 方程及其参数作为描述聚合物-盐和胶束 ATPS 在玻璃纤维纸上流动行为的潜在数学框架。我们比较了体相流体特性,并确定了相间的粘度差是纸张中相分离潜力的关键决定因素。然后,我们使用该参数预测了聚乙二醇(PEG)-葡聚糖 ATPS 在纸张中的相分离能力,并控制了领先相和滞后相的组成。我们还首次成功地在水凝胶中证明了相分离现象,从而将其应用和潜在益处扩展到替代多孔介质。

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