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Constructing vesicle-based artificial cells with embedded living cells as organelle-like modules

机译:用嵌入的活细胞作为细胞器样模块构建基于囊泡的人造细胞

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摘要

There is increasing interest in constructing artificial cells by functionalising lipid vesicles with biological and synthetic machinery. Due to their reduced complexity and lack of evolved biochemical pathways, the capabilities of artificial cells are limited in comparison to their biological counterparts. We show that encapsulating living cells in vesicles provides a means for artificial cells to leverage cellular biochemistry, with the encapsulated cells serving organelle-like functions as living modules inside a larger synthetic cell assembly. Using microfluidic technologies to construct such hybrid cellular bionic systems, we demonstrate that the vesicle host and the encapsulated cell operate in concert. The external architecture of the vesicle shields the cell from toxic surroundings, while the cell acts as a bioreactor module that processes encapsulated feedstock which is further processed by a synthetic enzymatic metabolism co-encapsulated in the vesicle.
机译:通过使用生物和合成机器功能化脂质囊泡来构建人造细胞的兴趣日益浓厚。由于其降低的复杂性和缺乏进化的生化途径,因此与它们的生物学对应物相比,人造细胞的能力受到限制。我们表明,将活细胞封装在囊泡中为人工细胞提供了一种利用细胞生物化学的手段,其中被封装的细胞在较大的合成细胞组件内部充当细胞器样功能,成为活模块。使用微流体技术来构建这种混合细胞仿生系统,我们证明了囊泡宿主和封装的细胞协同工作。囊泡的外部结构使细胞免受毒性环境的侵害,而细胞则充当生物反应器模块,该模块处理被囊封的原料,该原料被共囊封在囊泡中的合成酶促代谢进一步处理。

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