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Extracellular Matrix Fibronectin Stimulates the Self-Assembly of Microtissues on Native Collagen Gels

机译:细胞外基质纤连蛋白刺激天然胶原蛋白凝胶上的微组织的自组装。

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摘要

Fibronectin is an adhesive glycoprotein that is polymerized into extracellular matrices via a tightly regulated, cell-dependent process. Here, we demonstrate that fibronectin matrix polymerization induces the self-assembly of multicellular structures in vitro, termed tissue bodies. Fibronectin-null mouse embryonic fibroblasts adherent to compliant gels of polymerized type I collagen failed to spread or proliferate. In contrast, addition of fibronectin to collagen-adherent fibronectin-null mouse embryonic fibroblasts resulted in a dose-dependent increase in cell number, and induced the formation of three-dimensional (3D) multicellular structures that remained adherent and well-spread on the native collagen substrate. An extensive fibrillar fibronectin matrix formed throughout the microtissue. Blocking fibronectin matrix polymerization inhibited both cell proliferation and microtissue formation, demonstrating the importance of fibronectin fibrillogenesis in triggering cellular self-organization. Cell proliferation, tissue body formation, and tissue body shape were dependent on both fibronectin and collagen concentrations, suggesting that the relative proportion of collagen and fibronectin fibrils polymerized into the extracellular matrix influences the extent of cell proliferation and the final shape of microtissues. These data demonstrate a novel role for cell-mediated fibronectin fibrillogenesis in the formation and vertical assembly of microtissues, and provide a novel approach for engineering complex tissue architecture.
机译:纤连蛋白是一种粘附性糖蛋白,通过严格调节的细胞依赖性过程聚合成细胞外基质。在这里,我们证明纤连蛋白基质聚合诱导体外多细胞结构的自组装,称为组织体。粘在聚合的I型胶原蛋白顺应性凝胶上的无纤连蛋白的小鼠胚胎成纤维细胞未能扩散或增殖。相比之下,将纤连蛋白添加到胶原粘附的纤连蛋白无效的小鼠胚胎成纤维细胞中,导致细胞数量呈剂量依赖性增加,并诱导形成三维(3D)多细胞结构,该结构保持粘附并在天然细胞上广泛分布胶原蛋白底物。在整个微组织中形成广泛的纤维状纤连蛋白基质。阻断纤连蛋白基质聚合抑制细胞增殖和微组织形成,表明纤连蛋白原纤维形成在触发细胞自组织中的重要性。细胞增殖,组织体形成和组织体形均取决于纤连蛋白和胶原蛋白浓度,这表明聚合到细胞外基质中的胶原蛋白和纤连蛋白原纤维的相对比例影响细胞增殖的程度和微组织的最终形状。这些数据证明了细胞介导的纤连蛋白原纤维形成在微组织形成和垂直组装中的新作用,并为工程化复杂组织结构提供了一种新颖的方法。

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