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首页> 外文期刊>Nano communication networks >Model for biological communication in a nanofabricated cell-mimic driven by stochastic resonance
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Model for biological communication in a nanofabricated cell-mimic driven by stochastic resonance

机译:随机共振驱动的纳米细胞模拟中的生物通信模型

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摘要

Cells offer natural examples of highly efficient networks of nanomachines. Accordingly, both intracellular and intercellular communication mechanisms in nature are looked to as a source of inspiration and instruction for engineered nanocommunication. Harnessing biological functionality in this manner requires an interdisciplinary approach that integrates systems biology, synthetic biology, and nanofabrication. Here, we present a model system that exemplifies the synergism between these realms of research. We propose a synthetic gene network for operation in a nanofabricated cell mimic array that propagates a biomolecular signal over long distances using the phenomenon of stochastic resonance. Our system consists of a bacterial quorum sensing signal molecule, a bistable genetic switch triggered by this signal, and an array of nanofabricated cell mimic wells that contain the genetic system. An optimal level of noise in the system helps to propagate a time-varying AHL signal over long distances through the array of mimics. This noise level is determined both by the system volume and by the parameters of the genetic network. Our proposed genetically driven stochastic resonance system serves as a testbed for exploring the potential harnessing of gene expression noise to aid in the transmission of a time-varying molecular signal.
机译:细胞提供了高效的纳米机器网络的自然实例。因此,自然界中的细胞内和细胞间通讯机制都被视为启发和指导,以进行工程化的纳米通讯。以这种方式利用生物学功能需要跨学科的方法,将系统生物学,合成生物学和纳米制造相结合。在这里,我们提出了一个模型系统,例证了这些研究领域之间的协同作用。我们提出了一种用于在纳米细胞模拟阵列中操作的合成基因网络,该阵列利用随机共振现象在很长的距离内传播生物分子信号。我们的系统由细菌群体感应信号分子,由该信号触发的双稳态遗传开关以及包含该遗传系统的纳米加工细胞模拟孔组成。系统中的最佳噪声水平有助于将时变AHL信号通过模拟数组在很长的距离内传播。该噪声水平既取决于系统体积,又取决于遗传网络的参数。我们提出的遗传驱动的随机共振系统充当了一个试验台,用于探索潜在的基因表达噪声控制,以帮助传输时变的分子信号。

著录项

  • 来源
    《Nano communication networks》 |2011年第1期|p.39-49|共11页
  • 作者单位

    Center for Nanophase Materials Sciences, Oak Ridge National Laboratory, Bethel Valley Road, Oak Ridge, TN 37837, United States;

    Biosciences Division, Oak Ridge National Laboratory, Oak Ridge, TN 3783 J, United States,Graduate Program in Genome Science and Technology, University of Tennessee, Knoxville, TN 37996, United States;

    Center for Nanophase Materials Sciences, Oak Ridge National Laboratory, Bethel Valley Road, Oak Ridge, TN 37837, United States,Department of Physics and Astronomy, University of Tennessee, Knoxville, TN 37996-2010, United States;

    Center for Nanophase Materials Sciences, Oak Ridge National Laboratory, Bethel Valley Road, Oak Ridge, TN 37837, United States,Biosciences Division, Oak Ridge National Laboratory, Oak Ridge, TN 3783 J, United States;

    Center for Nanophase Materials Sciences, Oak Ridge National Laboratory, Bethel Valley Road, Oak Ridge, TN 37837, United States,Biosciences Division, Oak Ridge National Laboratory, Oak Ridge, TN 3783 J, United States;

    Center for Nanophase Materials Sciences, Oak Ridge National Laboratory, Bethel Valley Road, Oak Ridge, TN 37837, United States,Department of Materials Science and Engineering, University of Tennessee, Knoxville, TN 37996-2010, United States,Center for Environmental Biotechnology, University of Tennessee, Knoxville, TN 37996-2010, UnitedStates;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    stochastic resonance; synthetic biology; noise; quorum sensing; cell mimic;

    机译:随机共振;合成生物学;噪声;群体感应;细胞模拟;

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