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首页> 外文期刊>Angewandte Chemie >DNA Reaction-Diffusion Attractor Patterns
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DNA Reaction-Diffusion Attractor Patterns

机译:DNA反应 - 扩散吸引子图案

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摘要

Living systems can form and recover complex chemical patterns with precisely sized features in the ranges of tens or hundreds of microns. We show how designed reaction-diffusion processes can likewise produce precise patterns, termed attractor patterns, that reform their precise shape after being perturbed. We use oligonucleotide reaction networks, photolithography, and microfluidic delivery to form precisely controlled attractor patterns and study the responses of these patterns to different localized perturbations. Linear and "hill"-shaped patterns formed and stabilized into shapes and at time scales consistent with reaction-diffusion models. When patterns were perturbed in particular locations with UV light, they reliably reformed their steady-state profiles. Recovery also occurred after repeated perturbations. By designing the far-from-equilibrium dynamics of a chemical system, this study shows how it is possible to design spatial patterns of molecules that are sustained and regenerated by continually evolving towards a specific steady state configuration.
机译:生命系统可以形成并恢复复杂的化学模式,其特征尺寸精确到几十微米或几百微米。我们展示了设计的反应扩散过程如何同样产生精确的模式,称为吸引子模式,在受到扰动后改变其精确形状。我们使用寡核苷酸反应网络、光刻和微流控递送来形成精确控制的吸引子图案,并研究这些图案对不同局部扰动的响应。线性和“山形”模式形成并稳定为与反应扩散模型一致的形状和时间尺度。当图案在特定位置受到紫外线干扰时,它们可靠地改变了它们的稳态轮廓。反复扰动后也出现了恢复。通过设计一个化学系统的远离平衡的动力学,这项研究展示了如何设计分子的空间模式,这些分子通过不断演化到特定的稳态构型而得以维持和再生。

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