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首页> 外文期刊>Wound repair and regeneration: official publication of the Wound Healing Society [and] the European Tissue Repair Society >Using a continuum model to predict closure time of gaps in intestinal epithelial cell layers
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Using a continuum model to predict closure time of gaps in intestinal epithelial cell layers

机译:利用连续介质模型预测的关闭时间差距在肠道上皮细胞层

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摘要

A two-dimensional continuum model of collective cell migration is used to predict the closure of gaps in intestinal epithelial cell layers. The model assumes that cell migration is governed by lamellipodia formation, cell-cell adhesion, and cell-substrate adhesion. Model predictions of the gap edge position and complete gap closure time are compared with experimental measures from cell layer scratch assays (also called scratch wound assays). The goal of the study is to combine experimental observations with mathematical descriptions of cell motion to identify effects of gap shape and area on closure time and to propose a method that uses a simple measure (e.g., area) to predict overall gap closure time early in the closure process. Gap closure time is shown to increase linearly with increasing gap area; however, gaps of equal areas but different aspect ratios differ greatly in healing time. Previous methods that calculate overall healing time according to the absolute or percent change in gap area assume that the gap area changes at a constant rate and typically underestimate gap closure time. In this study, data from scratch assays suggest that the rate of change of area is proportional to the first power or square root power of area.
机译:一个二维连续体模型的集体细胞迁移是用来预测的关闭差距在肠道上皮细胞层。模型假定细胞迁移是由板状伪足的形成,信息附着力细胞基质粘附。缺口边缘位置和完整的差距关闭时间从细胞与实验措施层划伤化验(也称为刮伤化验)。实验观察与数学描述的细胞运动识别效果缺口的形状和面积的关闭时间提出一个方法,使用一个简单的措施(例如,区域)来预测总体差距关闭时间在关闭过程的早期。增加线性增加的差距区域;纵横比在愈合时间有很大的不同。以前的方法,计算整体疗愈时间根据绝对或变化百分比在假定的差距地区差距变化恒定速率,通常低估了差距关闭时间。分析表明,面积的变化率与第一权力或平方根成正比地区的力量。

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