成纤维细胞
趋化性
整合素
细胞外基质
细胞生物学
基质(化学分析)
纤维化
生物物理学
细胞迁移
伤口愈合
化学
材料科学
生物
体外
免疫学
细胞
生物化学
病理
医学
复合材料
受体
作者
Pardis Pakshir,Moien Alizadehgiashi,Boaz Wong,Nuno M. Coelho,Xingyu Chen,Ze Gong,Vivek B. Shenoy,Christopher A. McCulloch,Boris Hinz
标识
DOI:10.1038/s41467-019-09709-6
摘要
Abstract Macrophage (Mϕ)-fibroblast interactions coordinate tissue repair after injury whereas miscommunications can result in pathological healing and fibrosis. We show that contracting fibroblasts generate deformation fields in fibrillar collagen matrix that provide far-reaching physical cues for Mϕ. Within collagen deformation fields created by fibroblasts or actuated microneedles, Mϕ migrate towards the force source from several hundreds of micrometers away. The presence of a dynamic force source in the matrix is critical to initiate and direct Mϕ migration. In contrast, collagen condensation and fiber alignment resulting from fibroblast remodelling activities or chemotactic signals are neither required nor sufficient to guide Mϕ migration. Binding of α2β1 integrin and stretch-activated channels mediate Mϕ migration and mechanosensing in fibrillar collagen ECM. We propose that Mϕ mechanosense the velocity of local displacements of their substrate, allowing contractile fibroblasts to attract Mϕ over distances that exceed the range of chemotactic gradients.
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