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Chemical communication between liposomes encapsulating a chemical oscillatory reaction

机译:脂质体之间的化学连通封装了化学振荡反应

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摘要

Long-range chemical communication takes place over micrometer distance within different biological organisms and biomimetic chemical micro-compartments). A proper model for studying this phenomenon could rely on three features, namely (i) the compartmentalization of chemical information (using microfluidics), (ii) a stable emitter of periodic chemical signals inside compartments (Belousov-Zhabotinsky oscillating reaction) and (iii) a suitable spatio-temporal monitoring of the emitted chemical signal. In this paper we study chemical transmission across the interface between two immiscible liquids, eventually in the presence of lipid, by local electrochemical probing. We show that chemical information is transmitted either by direct transfer of redox active species and or by interfacial electron transfer. Insights obtained by electrochemical measurements, together with numerical simulations, are then used to transpose the communication across a phospholipid bilayer among oscillators compartmentalized in liposomes and dispersed in a water medium. The procedure for the successful generation of these celllike compartments through microfluidics is reported here for the first time.
机译:在不同的生物有机体和仿生化学微型隔室内,微米范围内发生远程化学通讯。研究这种现象的合适模型可以依靠三个特征,即(i)化学信息的分隔(使用微流体),(ii)隔室内的周期性化学信号的稳定发射体(Belousov-Zhabotinsky振荡反应)和(iii)对发出的化学信号进行适当的时空监视。在本文中,我们通过局部电化学探测研究了两种不混溶液体之间的界面上的化学传递,最终在脂质存在下。我们表明,化学信息是通过氧化还原活性物质的直接转移或通过界面电子转移而传递的。然后,将通过电化学测量获得的见解与数值模拟一起用于在脂质体中分隔并分散在水介质中的振荡器之间跨磷脂双层交换通讯。本文首次报道了通过微流体成功生成这些细胞样区室的过程。

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