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Budding-like division of all-aqueous emulsion droplets modulated by networks of protein nanofibrils

机译:蛋白质纳米原纤维网络调节的全水乳状液液滴的萌发状分裂

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摘要

Networks of natural protein nanofibrils, such as cytoskeletal filaments, control the shape and the division of cells, yet mimicking this functionality in a synthetic setting has proved challenging. Here, we demonstrate that artificial networks of protein nanofibrils can induce controlled deformation and division of all-aqueous emulsion droplets with budding-like morphologies. We show that this process is driven by the difference in the immersional wetting energy of the nanofibril network, and that both the size and the number of the daughter droplets formed during division can be controlled by modulating the fibril concentration and the chemical properties of the fibril network. Our results demonstrate a route for achieving biomimetic division with synthetic self-assembling fibrils and offer an engineered approach to regulate the morphology of protein gels.
机译:天然蛋白质纳米纤维的网络(例如细胞骨架细丝)控制着细胞的形状和分裂,但是在合成环境中模仿这种功能已证明具有挑战性。在这里,我们证明蛋白质纳米原纤维的人工网络可以诱导具有萌芽状形态的全水乳液液滴的受控变形和分裂。我们表明,这一过程是由纳米原纤维网络的浸没润湿能的差异驱动的,并且在分裂过程中形成的子液滴的大小和数量都可以通过调节原纤维浓度和原纤维的化学性质来控制。网络。我们的结果证明了使用合成的自组装原纤维实现仿生分裂的途径,并提供了一种工程方法来调节蛋白质凝胶的形态。

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