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Protocells programmed through artificial reaction networks

机译:通过人造反应网络编程的原始细胞

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摘要

As the smallest unit of life, cells attract interest due to their structural complexity and functional reliability. Protocells assembled by inanimate components are created as an artificial entity to mimic the structure and some essential properties of a natural cell, and artificial reaction networks are used to program the functions of protocells. Although the bottom-up construction of a protocell that can be considered truly ‘alive’ is still an ambitious goal, these man-made constructs with a certain degree of ‘liveness’ can offer effective tools to understand fundamental processes of cellular life, and have paved the new way for bionic applications. In this review, we highlight both the milestones and recent progress of protocells programmed by artificial reaction networks, including genetic circuits, enzyme-assisted non-genetic circuits, prebiotic mimicking reaction networks, and DNA dynamic circuits. Challenges and opportunities have also been discussed.
机译:作为最小的生活单位,由于其结构复杂性和功能可靠性,细胞吸引了利息。通过无生命组件组装的原始单元被创建为人工实体以模拟结构和自然细胞的一些基本特性,并且使用人造反应网络来编程Protocells的功能。虽然可以被视为真正“活着”的原始电容器的自下而上的建设仍然是一个雄心勃勃的目标,但这些具有一定程度的“活力”的人为构造可以提供有效的工具来了解细胞生命的基本过程,并具有为仿生应用铺平了新的方式。在这篇综述中,我们突出了人造反应网络编程的原始电池的里程碑和最近进展,包括遗传电路,酶辅助非遗传电路,益生元模拟反应网络和DNA动态电路。还讨论了挑战和机遇。

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