Daniel J C, Kosher R A, Hamos J E, Lash J W
J Cell Biol. 1974 Dec;63(3):843-54. doi: 10.1083/jcb.63.3.843.
The effect of a high external potassium concentration on the synthesis and deposition of matrix components by chondrocytes in cell culture was determined. There is a twofold increase in the amount of chondroitin 4- and 6-sulfate accumulated by chondrocytes grown in medium containing a high potassium concentration. There is also a comparable increase in the production of other sulfated glycosaminoglycans (GAG) including heparan sulfate and uncharacterized glycoprotein components. The twofold greater accumulation of GAG in the high potassium medium is primarily the result of a decrease in their rate of degradation. In spite of this increased accumulation of GAG, the cells in high potassium fail to elaborate appreciable quantities of visible matrix, although they do retain the typical chondrocytic polygonal morphology. Although most of the products are secreted into the culture medium in the high potassium environment, the cell layer retains the same amount of glycosaminoglycan as the control cultures. The inability of chondrocytes grown in high potassium to elaborate the typical hyaline cartilage matrix is not a consequence of an impairment in collagen synthesis, since there is no difference in the total amount of collagen synthesized by high potassium or control cultures. There is, however, a slight increase in the proportion of collagen that is secreted into the medium by chondrocytes in high potassium. Synthesis of the predominant cartilage matrix molecules is not sufficient in itself to ensure that these molecules will be assembled into a hyaline matrix.
研究了高细胞外钾浓度对细胞培养中软骨细胞合成和沉积基质成分的影响。在含高钾浓度的培养基中生长的软骨细胞积累的硫酸软骨素4-硫酸酯和6-硫酸酯的量增加了两倍。包括硫酸乙酰肝素和未鉴定的糖蛋白成分在内的其他硫酸化糖胺聚糖(GAG)的产生也有类似的增加。高钾培养基中GAG积累量增加两倍主要是其降解速率降低的结果。尽管GAG积累增加,但高钾环境中的细胞未能产生可观数量的可见基质,尽管它们确实保留了典型的软骨细胞多边形形态。虽然在高钾环境中大多数产物分泌到培养基中,但细胞层保留的糖胺聚糖量与对照培养物相同。高钾环境中生长的软骨细胞无法形成典型的透明软骨基质,这不是胶原合成受损的结果,因为高钾培养物或对照培养物合成的胶原总量没有差异。然而,高钾环境中软骨细胞分泌到培养基中的胶原比例略有增加。主要软骨基质分子的合成本身不足以确保这些分子将组装成透明基质。