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Direct Comparisons of the Morphology, Migration, Cell Adhesions, and Actin Cytoskeleton of Fibroblasts in Four Different Three-Dimensional Extracellular Matrices

机译:在四种不同的三维细胞外基质中,成纤维细胞的形态,迁移,细胞粘附和肌动蛋白细胞骨架的直接比较

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摘要

Interactions between cells and the extracellular matrix are at the core of tissue engineering and biology. However, most studies of these interactions have used traditional two-dimensional (2D) tissue culture, which is less physiological than three-dimensional (3D) tissue culture. In this study, we compared cell behavior in four types of commonly used extracellular matrix under 2D and 3D conditions. Specifically, we quantified parameters of cell adhesion and migration by human foreskin fibroblasts in cell-derived matrix or hydrogels of collagen type I, fibrin, or basement membrane extract (BME). Fibroblasts in 3D were more spindle shaped with fewer lateral protrusions and substantially reduced actin stress fibers than on 2D matrices; cells failed to spread in 3D BME. Cell–matrix adhesion structures were detected in all matrices. Although the shapes of these cell adhesions differed, the total area per cell occupied by cell–matrix adhesions in 2D and 3D was nearly identical. Fibroblasts migrated most rapidly in cell-derived 3D matrix and collagen and migrated minimally in BME, with highest migration directionality in cell-derived matrix. This identification of quantitative differences in cellular responses to different matrix composition and dimensionality should help guide the development of customized 3D tissue culture and matrix scaffolds for tissue engineering.
机译:细胞与细胞外基质之间的相互作用是组织工程和生物学的核心。但是,对这些相互作用的大多数研究都使用传统的二维(2D)组织培养,其生理性低于三维(3D)组织培养。在这项研究中,我们比较了2D和3D条件下四种常用细胞外基质的细胞行为。具体来说,我们量化了人包皮成纤维细胞在细胞源性基质或I型胶原蛋白,纤维蛋白或基底膜提取物(BME)的水凝胶中的细胞粘附和迁移参数。与2D基质相比,3D的成纤维细胞具有更多的纺锤形,较少的侧向突起和肌动蛋白应力纤维。细胞未能在3D BME中扩散。在所有基质中均检测到细胞-基质粘附结构。尽管这些细胞粘附的形状不同,但是在2D和3D中每个单元矩阵粘附的每个细胞的总面积几乎相同。成纤维细胞在细胞衍生的3D基质和胶原蛋白中迁移最快,在BME中迁移最少,在细胞衍生的基质中迁移方向性最高。这种对不同基质组成和尺寸的细胞反应的定量差异的鉴定应有助于指导针对组织工程的定制3D组织培养和基质支架的开发。

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