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Bilayer Networks within a Hydrogel Shell: A Robust Chassis for Artificial Cells and a Platform for Membrane Studies

机译:水凝胶壳内的双层网络:人造细胞的坚固底盘和膜研究的平台。

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摘要

The ability to make artificial lipid bilayers compatible with a wide range of environments, and with sufficient structural rigidity for manual handling, would open up a wealth of opportunities for their more routine use in real‐world applications. Although droplet interface bilayers (DIBs) have been demonstrated in a host of laboratory applications, from chemical logic to biosynthesis reaction vessels, their wider use is hampered by a lack of mechanical stability and the largely manual methods employed in their production. Multiphase microfluidics has enabled us to construct hierarchical triple emulsions with a semipermeable shell, in order to form robust, bilayer‐bound, droplet networks capable of communication with their external surroundings. These constructs are stable in air, water, and oil environments and overcome a critical obstacle of achieving structural rigidity without compromising environmental interaction. This paves the way for practical application of artificial membranes or droplet networks in diverse areas such as medical applications, drug testing, biophysical studies and their use as synthetic cells.
机译:使人造脂质双层与广泛的环境兼容的能力,以及具有足够的结构刚度以进行手动处理的能力,将为它们在现实世界中的常规应用提供更多的机会。尽管液滴界面双层(DIB)已在许多实验室应用中得到证明,从化学逻辑到生物合成反应容器,但由于缺乏机械稳定性和生产中使用的大量人工方法,阻碍了它们的广泛应用。多相微流体技术使我们能够构建具有半渗透性壳层的分层三重乳液,以形成能够与外部环境通信的坚固的,双层结合的液滴网络。这些结构在空气,水和石油环境中稳定,并克服了在不损害环境相互作用的情况下实现结构刚度的关键障碍。这为在诸如医学应用,药物测试,生物物理研究以及将其用作合成细胞等不同领域中的人工膜或液滴网络的实际应用铺平了道路。

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