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人工细胞骨架组装用于合成细胞运动。

Artificial Cytoskeleton Assembly for Synthetic Cell Motility.

机构信息

Department of Cellular Biophysics, Max Planck Institute for Medical Research, Jahnstraße 29, 69120, Heidelberg, Germany.

Institute for Molecular Systems Engineering and Advanced Materials, Heidelberg University, Im Neuenheimer Feld 225, 69120, Heidelberg, Germany.

出版信息

Macromol Biosci. 2023 Aug;23(8):e2200437. doi: 10.1002/mabi.202200437. Epub 2022 Dec 16.

Abstract

Imitation of cellular processes in cell-like compartments is a current research focus in synthetic biology. Here, a method is introduced for assembling an artificial cytoskeleton in a synthetic cell model system based on a poly(N-isopropyl acrylamide) (PNIPAM) composite material. Toward this end, a PNIPAM-based composite material inside water-in-oil droplets that are stabilized with PNIPAM-functionalized and commercial fluorosurfactants is introduced. The temperature-mediated contraction/release behavior of the PNIPAM-based cytoskeleton is investigated. The reversibility of the PNIPAM transition is further examined in bulk and in droplets and it could be shown that hydrogel induced deformation could be used to controllably manipulate droplet-based synthetic cell motility upon temperature changes. It is envisioned that a combination of the presented artificial cytoskeleton with naturally occurring components might expand the bandwidth of the bottom-up synthetic biology.

摘要

在类细胞隔室中模拟细胞过程是合成生物学的当前研究重点。在这里,引入了一种在基于聚(N-异丙基丙烯酰胺)(PNIPAM)复合材料的合成细胞模型系统中组装人工细胞骨架的方法。为此,引入了一种在水包油液滴内的基于 PNIPAM 的复合材料,该液滴由 PNIPAM 功能化和商业氟表面活性剂稳定。研究了基于 PNIPAM 的细胞骨架的温度介导的收缩/释放行为。进一步在本体和液滴中检查了 PNIPAM 转变的可逆性,并且可以表明水凝胶诱导的变形可以用于在温度变化时控制基于液滴的合成细胞的运动。可以设想,将所提出的人工细胞骨架与天然成分相结合,可能会扩展自下而上的合成生物学的带宽。

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