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首页> 外文期刊>ACS Omega >Shaking-Induced Aggregation and Flotation in Immunoglobulin Dispersions: Differences between Water and Water–Ethanol Mixtures
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Shaking-Induced Aggregation and Flotation in Immunoglobulin Dispersions: Differences between Water and Water–Ethanol Mixtures

机译:免疫球蛋白分散体中振荡诱导的聚集和浮选:水和水 - 乙醇混合物之间的差异

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摘要

Structural characterization by three complementary methods of laser diagnostics (dynamic light scattering, laser phase microscopy, and laser polarimetric scatterometry) has established that shaking of immunoglobulin G (IgG) dispersions in water and ethanol–water mixtures (36.7 vol %) results in two effects. First, it intensifies the aggregation of IgG macromolecules. Second, it generates bubbles with a size range that is different in each solvent. The aggregation is enhanced in ethanol–water mixtures because of IgG denaturation. IgG aggregates have a size of ~300 nm in water and ~900 nm in ethanol–water mixtures. The flotation of IgG is much more efficient in water. This can be explained by a better adsorption of IgG particles (molecules and aggregates) on bubbles in water as compared to ethanol–water mixtures. Bulk nanobubbles and their association with IgG aggregates were visualized by laser phase microscopy in water but were not detected in ethanol–water mixtures. Therefore, the nanobubble flotation mechanism for IgG aggregates acting in water is not feasible for ethanol–water mixtures.
机译:通过三种激光诊断方法(动态光散射,激光相显微镜和激光偏振散射术)的结构表征已经确定了免疫球蛋白G(IgG)分散在水和乙醇 - 水混合物中的摇动(36.7体积%)导致两种效应。首先,它加剧了IgG大分子的聚集。其次,它产生气泡,尺寸范围在每种溶剂中不同。由于IgG变性,聚集在乙醇 - 水混合物中增强。 IgG聚集体在水中具有〜300nm的尺寸,乙醇 - 水混合物中〜900nm。 IgG的浮选在水中更有效。与乙醇 - 水混合物相比,可以通过更好地吸附在水中的泡沫中的IgG颗粒(分子和聚集体)来解释。通过在水中激光相显微镜观察散装纳米泡及其与IgG聚集体的关系,但未在乙醇 - 水混合物中检测到。因此,用于在水中作用于水的IgG聚集体的纳米泡浮选机制对于乙醇 - 水混合物不可行。

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