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液滴对在水面上呈现配对、自主运动和周期性喷发。

Droplet duos on water display pairing, autonomous motion, and periodic eruption.

机构信息

Department of Applied Physics, Tokyo University of Science, 6-3-1 Niijuku, Katsushika, Tokyo, 125-8585, Japan.

Department of Chemical Engineering and Materials Science, Doshisha University, 1-3 Tatara Miyakodani, Kyotanabe, Kyoto, 610-0321, Japan.

出版信息

Sci Rep. 2023 Jul 31;13(1):12377. doi: 10.1038/s41598-023-39094-6.

Abstract

Under non-equilibrium conditions, liquid droplets dynamically couple with their milieu through the continuous flux of matter and energy, forming active systems capable of self-organizing functions reminiscent of those of living organisms. Among the various dynamic behaviors demonstrated by cells, the pairing of heterogeneous cell units is necessary to enable collective activity and cell fusion (to reprogram somatic cells). Furthermore, the cyclic occurrence of eruptive events such as necroptosis or explosive cell lysis is necessary to maintain cell functions. However, unlike the self-propulsion behavior of cells, cyclic cellular behavior involving pairing and eruption has not been successfully modeled using artificial systems. Here, we show that a simple droplet system based on quasi-immiscible hydrophobic oils (perfluorodecalin and decane) deposited on water, mimics such complex cellular dynamics. Perfluorodecalin and decane droplet duos form autonomously moving Janus or coaxial structures, depending on their volumes. Notably, the system with a coaxial structure demonstrates cyclic behavior, alternating between autonomous motion and eruption. Despite their complexity, the dynamic behaviors of the system are consistently explained in terms of the spreading properties of perfluorodecalin/decane duplex interfacial films.

摘要

在非平衡条件下,液滴通过物质和能量的连续流动与环境动态耦合,形成能够自我组织功能的活性系统,这些功能让人联想到生物体的功能。在细胞表现出的各种动态行为中,异质细胞单元的配对对于实现集体活动和细胞融合(重编程体细胞)是必要的。此外,周期性发生的爆发性事件,如坏死性凋亡或细胞爆炸裂解,对于维持细胞功能也是必要的。然而,与细胞的自推进行为不同,涉及配对和爆发的周期性细胞行为尚未成功地通过人工系统进行建模。在这里,我们展示了一个简单的基于准不混溶的疏油液滴(全氟癸烷和癸烷)在水表面沉积的液滴系统,可以模拟这种复杂的细胞动力学。全氟癸烷和癸烷液滴对可以自动形成自主运动的 Janus 或同轴结构,这取决于它们的体积。值得注意的是,具有同轴结构的系统表现出周期性行为,在自主运动和爆发之间交替。尽管系统很复杂,但可以根据全氟癸烷/癸烷双层界面膜的扩展特性来一致地解释其动态行为。

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