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哺乳动物细胞的合成双向通讯。

Synthetic two-way communication between mammalian cells.

机构信息

Department of Biosystems Science and Engineering, ETH Zurich, Basel, Switzerland.

出版信息

Nat Biotechnol. 2012 Oct;30(10):991-6. doi: 10.1038/nbt.2351. Epub 2012 Sep 16.

Abstract

The design of synthetic biology-inspired control devices enabling entire mammalian cells to receive, process and transfer metabolic information and so communicate with each other via synthetic multichannel networks may provide new insight into the organization of multicellular organisms and future clinical interventions. Here we describe communication networks that orchestrate behavior in individual mammalian cells in response to cell-to-cell metabolic signals. We engineered sender, processor and receiver cells that interact with each other in ways that resemble natural intercellular communication networks such as multistep information processing cascades, feed-forward-based signaling loops, and two-way communication. The engineered two-way communication devices mimicking natural control systems in the development of vertebrate extremities and vasculature was used to program temporal permeability in vascular endothelial cell layers. These synthetic multicellular communication systems may inspire future therapies or tissue engineering strategies.

摘要

受合成生物学启发的控制装置的设计使整个哺乳动物细胞能够接收、处理和传递代谢信息,从而通过合成多通道网络彼此通信,这可能为多细胞生物的组织和未来的临床干预提供新的见解。在这里,我们描述了协调单个哺乳动物细胞行为的通信网络,以响应细胞间代谢信号。我们设计了发送器、处理器和接收器细胞,它们以类似于自然细胞间通信网络(如多步骤信息处理级联、基于前馈的信号环路和双向通信)的方式相互作用。工程化的双向通信设备模拟了在脊椎动物四肢和脉管系统发育过程中的天然控制系统,用于编程血管内皮细胞层的时间渗透性。这些合成的多细胞通信系统可能为未来的治疗方法或组织工程策略提供灵感。

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