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Deformation gradients imprint the direction and speed of en masse fibroblast migration for fast healing

机译:变形梯度印记了成纤维细胞迁移的方向和速度可实现快速愈合

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摘要

En masse cell migration is more relevant than single cell migration in physiological processes of tissue formation, such as embryogenesis, morphogenesis and wound healing. In these situations, cells are influenced by the proximity of other cells including interactions facilitated by substrate mechanics. Here we found that when fibroblasts migrated en masse over a hydrogel, they established a well-defined deformation field by traction forces and migrated along a trajectory defined by field gradients. The mechanics of the hydrogel determined the magnitude of the gradient. For materials stiff enough to withstand deformation related to cellular traction forces, such patterns did not form. Furthermore, migration patterns functioned poorly on very soft matrices where only a minimal traction gradient could be established. The largest degree of alignment and migration velocity occurred on the gels with the largest gradients. Granulation tissue formation in punch wounds of juvenile pigs was correlated strongly with the modulus of the implanted gel in agreement with in vitro en masse cell migration studies. These findings provide basic insight into the biomechanical influences on fibroblast movement in early wounds and relevant design criteria for development of tissue-engineered constructs that aim to stimulate en masse cell recruitment for rapid wound healing.
机译:在组织形成的生理过程中,例如胚胎发生,形态发生和伤口愈合,大规模细胞迁移比单细胞迁移更重要。在这些情况下,细胞受其他细胞的邻近性影响,包括底物力学促进的相互作用。在这里,我们发现,当成纤维细胞在水凝胶上大量迁移时,它们通过牵引力建立了清晰的变形场,并沿着由场梯度定义的轨迹迁移。水凝胶的力学决定了梯度的大小。对于足够坚硬以承受与细胞牵引力有关的变形的材料,则不会形成这种图案。此外,迁移模式在非常软的矩阵上无法正常工作,在该矩阵上只能建立最小的牵引梯度。最大的排列和迁移速度发生在具有最大梯度的凝胶上。与体外大规模细胞迁移研究一致,幼年猪打孔伤口中肉芽组织的形成与植入的凝胶的模量密切相关。这些发现提供了对早期伤口中成纤维细胞运动的生物力学影响的基本见识,以及旨在刺激大规模细胞募集以促进伤口快速愈合的组织工程构造的发展的相关设计标准。

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