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用于趋硬迁移的随机游走模型。

Random walker models for durotaxis.

作者信息

Doering Charles R, Mao Xiaoming, Sander Leonard M

机构信息

Center for the Study of Complex Systems, University of Michigan, Ann Arbor, MI 48109-1107, United States of America. Department of Mathematics, University of Michigan, Ann Arbor, MI 48109-1043, United States of America. Department of Physics, University of Michigan, Ann Arbor, MI 48109-1040, United States of America.

出版信息

Phys Biol. 2018 Sep 11;15(6):066009. doi: 10.1088/1478-3975/aadc37.

Abstract

Motile biological cells in tissue often display the phenomenon of durotaxis, i.e. they tend to move towards stiffer parts of substrate tissue. The mechanism for this behavior is not completely understood. We consider simplified models for durotaxis based on the classic persistent random walker scheme. We show that even a one-dimensional model of this type sheds interesting light on the classes of behavior cells might exhibit. Our results strongly indicate that cells must be able to sense the gradient of stiffness in order to show the effects observed in experiment. This is in contrast to the claims in recent publications that it is sufficient for cells to be more persistent in their motion on stiff substrates to show durotaxis: i.e. it would be enough to sense the value of the stiffness. We show that these cases give rise to extremely inefficient transport towards stiff regions. Gradient sensing is almost certainly the selected behavior.

摘要

组织中的运动性生物细胞常常表现出趋硬性现象,即它们倾向于朝着基底组织较硬的部分移动。这种行为的机制尚未完全理解。我们基于经典的持续随机游走方案考虑趋硬性的简化模型。我们表明,即使是这种类型的一维模型也能为细胞可能表现出的行为类别提供有趣的见解。我们的结果有力地表明,细胞必须能够感知硬度梯度才能表现出实验中观察到的效应。这与最近出版物中的说法相反,即细胞在硬基质上运动时更具持续性就足以表现出趋硬性:也就是说,感知硬度值就足够了。我们表明,这些情况会导致向硬区域的运输效率极低。几乎可以肯定,梯度感知是被选择的行为。

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