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Non-equilibrium behaviour in coacervate-based protocells under electric-field-induced excitation

机译:基于凝聚层的原电池在电场诱导下的非平衡行为

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摘要

Although numerous strategies are now available to generate rudimentary forms of synthetic cell-like entities, minimal progress has been made in the sustained excitation of artificial protocells under non-equilibrium conditions. Here we demonstrate that the electric field energization of coacervate microdroplets comprising polylysine and short single strands of DNA generates membrane-free protocells with complex, dynamical behaviours. By confining the droplets within a microfluidic channel and applying a range of electric field strengths, we produce protocells that exhibit repetitive cycles of vacuolarization, dynamical fluctuations in size and shape, chaotic growth and fusion, spontaneous ejection and sequestration of matter, directional capture of solute molecules, and pulsed enhancement of enzyme cascade reactions. Our results highlight new opportunities for the study of non-equilibrium phenomena in synthetic protocells, provide a strategy for inducing complex behaviour in electrostatically assembled soft matter microsystems and illustrate how dynamical properties can be activated and sustained in microcompartmentalized media.
机译:尽管现在有许多策略可用于产生基本形式的合成细胞样实体,但在非平衡条件下持续激发人工原始细胞方面的进展很小。在这里,我们证明凝聚力微滴包含多聚赖氨酸和短的单链DNA的电场能产生具有复杂,动态行为的无膜原细胞。通过将液滴限制在微流体通道内并施加一定范围的电场强度,我们生产出的原生细胞显示出重复的液泡化,大小和形状的动态波动,混沌的生长和融合,物质的自发喷射和隔离,溶质的定向捕获分子,并脉冲增强酶的级联反应。我们的结果突出了研究合成原生细胞中非平衡现象的新机会,提供了在静电组装的软物质微系统中诱导复杂行为的策略,并说明了如何在微隔室化介质中激活和维持动力学特性。

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