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使用人工细胞外基质的 3D 球体细胞培养模型评估细胞表面相互作用。

Evaluation of cell-surface interaction using a 3D spheroid cell culture model on artificial extracellular matrices.

机构信息

Department of Trauma, Hand and Reconstructive Surgery, Saarland University, Building 57, 66421 Homburg, Germany.

Institute of Materials Science, Max Bergmann Center of Biomaterials, TU Dresden, Budapester Straße 27, 01069 Dresden, Germany.

出版信息

Mater Sci Eng C Mater Biol Appl. 2017 Apr 1;73:310-318. doi: 10.1016/j.msec.2016.12.087. Epub 2016 Dec 20.

Abstract

Since decades, cell-surface interactions are studied in 2D cell culture approaches, but cells organized in 3D (spheroids) reflect the normal situation of cells in tissues much better due to intense cell-cell-contacts. Accordingly, this study aimed to prove, if spheroids could be used to study cell-surface interaction. Spheroids consisting of fibroblasts and/or osteoblasts were seeded on artificial extracellular matrices. Here, non-sulfated hyaluronan as a biological relevant compound of the extracellular matrix was chemically sulfated to different extents and co-fibrillised with collagen. The changes of the spheroid diameters and the migration distance of outgrown cells after seeding on the matrices were used as parameters to evaluate cell-surface interaction quantitatively. Fibroblast-based spheroids reacted in the initial phase of adhesion with different spheroid sizes on the contact with the matrices. In contrast, the reaction of osteoblasts was more pronounced at later time points exhibiting a decrease of the size of the spheroids with increasing sulfation degree of the matrix. The migration of the cells was impaired by increasing sulfation degree, which might be caused by an increased expression of focal adhesion relevant proteins. In summary, spheroids can be used in cell-surface interaction studies and additional analytical tools could be implemented.

摘要

几十年来,细胞表面相互作用一直是在 2D 细胞培养方法中进行研究的,但由于细胞间的紧密接触,组织中排列成 3D(球体)的细胞更能反映细胞的正常情况。因此,本研究旨在证明球体是否可用于研究细胞表面相互作用。将成纤维细胞和/或成骨细胞组成的球体接种在人工细胞外基质上。在这里,非硫酸化透明质酸作为细胞外基质的生物相关化合物,被化学硫酸化至不同程度,并与胶原蛋白共纤化。球体直径的变化和接种在基质上后细胞向外生长的迁移距离被用作定量评估细胞表面相互作用的参数。基于成纤维细胞的球体在初始粘附阶段与接触基质的不同大小的球体反应。相比之下,成骨细胞的反应在后期更为明显,表现为随着基质硫酸化程度的增加,球体的大小减小。细胞的迁移受到硫酸化程度增加的阻碍,这可能是由于与粘着斑相关的蛋白质表达增加所致。总之,球体可用于细胞表面相互作用研究,并且可以实施其他分析工具。

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