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Development and applications of a model for cellular response to multiple chemotactic cues

机译:细胞对多种趋化线索的反应模型的开发和应用

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The chemotactic response of a cell population to a single chemical species has been characterized experimentally for many cell types and has been extensively studied from a theoretical standpoint. However, cells frequently have multiple receptor types and can detect and respond chemotactically to more than one chemical. How these signals are integrated within the cell is not known, and we therefore adopt a macroscopic phenomenological approach to this problem. In this paper we derive and analyze chemotactic models based on partial differential (chemotaxis) equations for cell movement in response to multiple chemotactic cues. Our derivation generalizes the approach of Othmer and Stevens [29], who have recently developed a modeling framework for studying different chemotactic responses to a single chemical species. The importance of such a generalization is illustrated by the effect of multiple chemical cues on the chemotactic sensitivity and the spatial pattern of cell densities in several examples. We demonstrate that the model can generate the complex patterns observed on the skin of certain animal species and we indicate how the chemotactic response can be viewed as a form of positional indicator. [References: 40]
机译:对于许多细胞类型,已经通过实验表征了细胞群体对单一化学物种的趋化反应,并且已经从理论的角度进行了广泛的研究。但是,细胞通常具有多种受体类型,并且可以检测并化学反应多种以上的化学物质。这些信号如何在细胞内整合尚不清楚,因此我们采用宏观现象学方法来解决此问题。在本文中,我们基于偏微分方程(趋化方程)导出并分析了趋化模型,这些趋化模型是细胞对多种趋化线索的响应。我们的推导概括了Othmer和Stevens [29]的方法,他们最近开发了一种建模框架,用于研究对单个化学物种的不同趋化反应。在几个示例中,多种化学提示对趋化敏感性和细胞密度空间格局的影响说明了这种概括的重要性。我们证明了该模型可以产生某些动物物种在皮肤上观察到的复杂模式,并且表明如何将趋化反应视为位置指示剂的一种形式。 [参考:40]

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