Gregory K E, Marsden M E, Anderson-MacKenzie J, Bard J B, Bruckner P, Farjanel J, Robins S P, Hulmes D J
Department of Biochemistry, University of Edinburgh, Edinburgh, United Kingdom.
Exp Cell Res. 1999 Jan 10;246(1):98-107. doi: 10.1006/excr.1998.4291.
The collagens produced by chick embryo chondrocytes cultured in alginate beads were investigated both biochemically and ultrastructurally. The cartilage phenotype is maintained for at least 14 days, as indicated by the production of the cartilage-specific collagens II, IX, and XI and the absence of collagen I. There were differences in the distributions of collagens among the three different compartments analyzed (cells and their associated matrix, further-removed matrix (released by alginate solubilization), and culture medium), with large amounts of collagen IX (mainly in proteoglycan form) in the culture medium. Inhibition of lysyl oxidase activity by beta-aminopropionitrile led to an overall decrease in collagen production. In contrast to the biochemical observations, collagen ultrastructure in the extracellular matrix of alginate cultures was not in the form of the expected 64-nm banded fibrils, but rather in the form of segment-long-spacing-like crystallites. This abnormal structure is likely to be a result of alginate disrupting normal assembly. We conclude that, in this system, the native fibrillar structure of the collagenous matrix is not essential for the maintenance of the differentiated phenotype of chondrocytes.
对培养在藻酸盐珠中的鸡胚软骨细胞产生的胶原蛋白进行了生化和超微结构研究。软骨表型至少维持14天,这通过软骨特异性胶原蛋白II、IX和XI的产生以及胶原蛋白I的缺失得以表明。在所分析的三个不同区室(细胞及其相关基质、进一步分离的基质(通过藻酸盐溶解释放)和培养基)中,胶原蛋白的分布存在差异,培养基中有大量的胶原蛋白IX(主要以蛋白聚糖形式存在)。β-氨基丙腈对赖氨酰氧化酶活性的抑制导致胶原蛋白产生总体下降。与生化观察结果相反,藻酸盐培养物细胞外基质中的胶原蛋白超微结构不是预期的64纳米带状纤维形式,而是节段长间距样微晶形式。这种异常结构可能是藻酸盐破坏正常组装的结果。我们得出结论,在这个系统中,胶原基质的天然纤维结构对于维持软骨细胞的分化表型不是必需的。