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Conceptual and Experimental Tools to Understand Spatial Effects and Transport Phenomena in Nonlinear Biochemical Networks Illustrated with Patchy Switching
Annual Review of Biochemistry ( IF 16.6 ) Pub Date : 2017-06-27 00:00:00 , DOI: 10.1146/annurev-biochem-060815-014207
Rebecca R. Pompano 1 , Andrew H. Chiang 2 , Christian J. Kastrup 3 , Rustem F. Ismagilov 4
Affiliation  

Many biochemical systems are spatially heterogeneous and exhibit nonlinear behaviors, such as state switching in response to small changes in the local concentration of diffusible molecules. Systems as varied as blood clotting, intracellular calcium signaling, and tissue inflammation are all heavily influenced by the balance of rates of reaction and mass transport phenomena including flow and diffusion. Transport of signaling molecules is also affected by geometry and chemoselective confinement via matrix binding. In this review, we use a phenomenon referred to as patchy switching to illustrate the interplay of nonlinearities, transport phenomena, and spatial effects. Patchy switching describes a change in the state of a network when the local concentration of a diffusible molecule surpasses a critical threshold. Using patchy switching as an example, we describe conceptual tools from nonlinear dynamics and chemical engineering that make testable predictions and provide a unifying description of the myriad possible experimental observations. We describe experimental microfluidic and biochemical tools emerging to test conceptual predictions by controlling transport phenomena and spatial distribution of diffusible signals, and we highlight the unmet need for in vivo tools.

中文翻译:


概念和实验工具,以了解空间效应和运输现象在非线性生化网络中的斑驳转换说明。

许多生化系统在空间上是异质的,并且表现出非线性行为,例如响应于可扩散分子局部浓度的微小变化而进行的状态切换。诸如血液凝固,细胞内钙信号传导和组织炎症之类的系统都受到反应速率与包括流动和扩散在内的质量传输现象之间的平衡的严重影响。信号分子的运输还受基质结合的几何形状和化学选择性限制的影响。在这篇综述中,我们使用一种称为斑片开关的现象来说明非线性,传输现象和空间效应之间的相互作用。修补切换描述了当可扩散分子的局部浓度超过临界阈值时网络状态的变化。以斑块切换为例,我们描述了来自非线性动力学和化学工程学的概念工具,这些工具可以进行可预测的预测,并提供对各种可能的实验观察结果的统一描述。我们描述了通过控制传输现象和可扩散信号的空间分布来测试概念预测的实验性微流体和生化工具,并强调了对体内工具的未满足需求。

更新日期:2017-06-27
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