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Spatiotemporal Patterning of Living Cells with Extracellular DNA Programs

机译:用细胞外DNA程序的活细胞时尚图案化

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摘要

Reactive extracellular media focus on engineering reaction networks outside the cell to control intracellular chemical composition across time and space. However, current implementations lack the feedback loops and out-of-equilibrium molecular dynamics for encoding spatiotemporal control. Here, we demonstrate that enzyme-DNA molecular programs combining these qualities are functional in an extracellular medium where human cells can grow. With this approach, we construct an internalization program that delivers fluorescent DNA inside living cells and remains functional for at least 48 h. Its nonequilibrium dynamics allows us to control both the time and position of cell internalization. In particular, a spatially inhomogeneous version of this program generates a tunable reaction-diffusion two-band pattern of cell internalization. This demonstrates that a synthetic extracellular program can provide temporal and positional information to living cells, emulating archetypal mechanisms observed during embryo development. We foresee that nonequilibrium reactive extracellular media could be advantageously applied to in vitro biomolecular tracking, tissue engineering, or smart bandages.
机译:反应性细胞外介质关注细胞外的工程反应网络,以跨时间和空间控制细胞内的化学成分。然而,目前的实现缺乏用于编码时空控制的反馈回路和失衡分子动力学。在这里,我们证明了结合这些特性的酶DNA分子程序在细胞外培养基中发挥作用,人类细胞可以在该培养基中生长。通过这种方法,我们构建了一个内化程序,在活细胞内传递荧光DNA,并在至少48小时内保持功能。其非平衡动力学允许我们控制细胞内化的时间和位置。特别是,该程序的空间不均匀版本生成了细胞内化的可调反应扩散双带模式。这表明合成的细胞外程序可以向活细胞提供时间和位置信息,模拟胚胎发育过程中观察到的原型机制。我们预见,非平衡反应性细胞外介质可有利地应用于体外生物分子追踪、组织工程或智能绷带。

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