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A 3-D Model of Ligand Transport in a Deforming Extracellular Space

机译:变形细胞外空间中的配体转运的3D模型

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摘要

Cells communicate through shed or secreted ligands that traffic through the interstitium. Force-induced changes in interstitial geometry can initiate mechanotransduction responses through changes in local ligand concentrations. To gain insight into the temporal and spatial evolution of such mechanotransduction responses, we developed a 3-D computational model that couples geometric changes observed in the lateral intercellular space (LIS) of mechanically loaded airway epithelial cells to the diffusion-convection equations that govern ligand transport. By solving the 3-D fluid field under changing boundary geometries, and then coupling the fluid velocities to the ligand transport equations, we calculated the temporal changes in the 3-D ligand concentration field. Our results illustrate the steady-state heterogeneities in ligand distribution that arise from local variations in interstitial geometry, and demonstrate that highly localized changes in ligand concentration can be induced by mechanical loading, depending on both local deformations and ligand convection effects. The occurrence of inhomogeneities at steady state and in response to mechanical loading suggest that local variations in ligand concentration may have important effects on cell-to-cell variations in basal signaling state and localized mechanotransduction responses.
机译:细胞通过通过间质运输的脱落或分泌的配体进行通讯。力诱导的间隙几何形状变化可通过局部配体浓度的变化引发机械转导反应。为了深入了解此类机械转导反应的时空演变,我们开发了一个3-D计算模型,该模型将机械加载的气道上皮细胞的横向细胞间空间(LIS)中观察到的几何变化与控制配体的扩散对流方程相结合运输。通过求解边界几何形状变化下的3-D流场,然后将流体速度耦合到配体迁移方程,我们计算了3-D配体浓度场的时间变化。我们的结果说明了由间隙几何形状的局部变化引起的配体分布的稳态异质性,并表明机械载荷可引起配体浓度的高度局部变化,这取决于局部变形和配体对流效应。在稳态和对机械负荷的响应中,不均匀性的发生表明配体浓度的局部变化可能对基础信号传递状态和局部机械转导响应中的细胞间变化具有重要影响。

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