Department of Chemical Engineering and Chemistry, Eindhoven University of Technology, PO Box 513, 5600 MB, Eindhoven, the Netherlands.
Institute for Complex Molecular Systems, Eindhoven University of Technology, PO Box 513, 5600 MB, Eindhoven, the Netherlands.
Nat Commun. 2020 Apr 3;11(1):1652. doi: 10.1038/s41467-020-15482-8.
Multicellular organisms rely on intercellular communication to coordinate the behaviour of individual cells, which enables their differentiation and hierarchical organization. Various cell mimics have been developed to establish fundamental engineering principles for the construction of artificial cells displaying cell-like organization, behaviour and complexity. However, collective phenomena, although of great importance for a better understanding of life-like behaviour, are underexplored. Here, we construct collectives of giant vesicles that can communicate with each other through diffusing chemical signals that are recognized and processed by synthetic enzymatic cascades. Similar to biological cells, the Receiver vesicles can transduce a weak signal originating from Sender vesicles into a strong response by virtue of a signal amplification step, which facilitates the propagation of signals over long distances within the artificial cell consortia. This design advances the development of interconnected artificial cells that can exchange metabolic and positional information to coordinate their higher-order organization.
多细胞生物依赖于细胞间通讯来协调单个细胞的行为,从而实现细胞的分化和层次组织。已经开发出各种细胞模拟物,以建立用于构建表现出类似细胞的组织、行为和复杂性的人工细胞的基本工程原理。然而,尽管对于更好地理解类生命行为很重要,但集体现象仍未得到充分探索。在这里,我们构建了可以通过扩散化学信号进行通信的巨型囊泡集体,这些化学信号可以被合成酶级联识别和处理。类似于生物细胞,接收囊泡可以通过信号放大步骤将源自发送囊泡的弱信号转导为强响应,从而促进信号在人工细胞联合体中远距离传播。该设计推进了互连的人工细胞的发展,这些细胞可以交换代谢和位置信息,以协调它们的高级组织。