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Re-entrant isotropic-nematic phase behavior in polymer-depleted amyloid fibrils

机译:聚合物贫化的淀粉样原纤维的折返各向同性向列相行为

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摘要

Amyloid fibrils dispersed in water exhibit both isotropic (I) and nematic (N) phases, depending on concentration, but their coexistence, expected from the first order nature of the I - N thermodynamic transition is seldom observed. By adding a non-absorbing polymer to an amyloid fibrils suspension, we report, for the first time, an unusual closed-loop phase behavior. The phase diagrams reveal that the I + N coexistence does emerge, but only when the depleting polymer is present at intermediate concentrations. We combine depletion potentials in the dilute and semi-dilute polymer regime with the DLVO theory and the principle of equivalent law of corresponding states to calculate variations of the second virial coefficient with increasing polymer concentrations. We conclude that the decrease of the depletion potential range in the semi-dilute regime plays a pivotal role in the observed re-stabilization, leading to a closure of the I + N coexistence region.
机译:取决于浓度,分散在水中的淀粉样蛋白原纤维同时表现出各向同性(I)和向列(N)相,但很少观察到它们的共存,这是从I-N热力学转变的一级性质所预期的。通过将非吸收性聚合物添加到淀粉样蛋白原纤维悬浮液中,我们首次报告了异常的闭环相行为。相图表明确实存在I + N共存,但仅当消耗聚合物以中等浓度存在时。我们结合DLVO理论和相应状态的等效律原理,将稀和半稀释聚合物体系中的耗尽电势结合起来,以计算第二维里系数随聚合物浓度增加的变化。我们得出结论,在半稀释状态下耗尽电位范围的减小在观察到的重新稳定化中起着关键作用,导致I + N共存区域的关闭。

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