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One-Dimensional Elastic Continuum Model of Enterocyte Layer Migration

机译:肠细胞层迁移的一维弹性连续谱模型

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摘要

Necrotizing enterocolitis is the leading cause of death from gastrointestinal disease in preterm infants. It results from an injury to the mucosal lining of the intestine, leading to translocation of bacteria and endotoxin into the circulation. Intestinal mucosal defects are repaired by the process of intestinal restitution, during which enterocytes migrate from healthy areas to sites of injury. In this article, we develop a mathematical model of migration of enterocytes during experimental necrotizing enterocolitis. The model is based on a novel assumption of elastic deformation of the cell layer and incorporates the following effects: i), mobility promoting force due to lamellipod formation, ii), mobility impeding adhesion to the cell matrix, and iii), enterocyte proliferation. Our model successfully reproduces the behavior observed for enterocyte migration on glass coverslips, namely the dependence of migration speed on the distance from the wound edge, and the finite propagation distance in the absence of proliferation that results in an occasional failure to close the wound. It also qualitatively reproduces the dependence of migration speed on integrin concentration. The model is applicable to the closure of a wound with a linear edge and, after calibration with experimental data, could be used to predict the effect of chemical agents on mobility, adhesion, and proliferation of enterocytes.
机译:坏死性小肠结肠炎是早产儿胃肠道疾病致死的主要原因。它起因于肠粘膜内层的损伤,导致细菌和内毒素易位进入循环系统。肠道粘膜缺损通过肠道恢复过程修复,在此过程中肠细胞从健康区域迁移到损伤部位。在本文中,我们建立了实验性坏死性小肠结肠炎过程中肠细胞迁移的数学模型。该模型基于细胞层弹性变形的新假设,并包含以下效果:i)由于层状脂质形成而引起的运动促进力; ii)阻碍细胞基质粘附的运动性; iii)肠上皮细胞增殖。我们的模型成功地再现了在玻璃盖玻片上观察到的肠上皮细胞迁移的行为,即迁移速度对与伤口边缘的距离的依赖性,以及在不存在增殖的情况下有限的传播距离,从而导致偶尔无法闭合伤口。它也定性地再现了迁移速度对整联蛋白浓度的依赖性。该模型适用于具有线性边缘的伤口闭合,并且在用实验数据校准后,可用于预测化学试剂对肠上皮细胞的迁移,粘附和增殖的影响。

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