Anderson R E, Kemp J W, Jee W S, Woodbury D M
In Vitro. 1984 Nov;20(11):837-46. doi: 10.1007/BF02619629.
Cultures of osteoblastlike cells obtained from the endosteal surfaces of rabbit long bones formed and mineralized an extracellular matrix when they were supplied daily with medium containing fresh ascorbate. No matrix formed without this supplementation. The matrix mineralized whether or not beta-glycerophosphate, a substrate of alkaline phosphatase, was added to the medium. The ion-transporting ATPase activities of untreated, ascorbate-treated, and ascorbate plus beta-glycerophosphate-treated cells were measured. Ascorbate-treated and ascorbate plus beta-glycerophosphate-treated cells had similar enzyme activities. The activities of the Ca2+-ATPase; Ca2+,Mg2+-ATPase; and alkaline phosphatase in treated cells were elevated over the activities in untreated cells. Na+,K+-ATPase activity was lower in treated than in untreated cells. HCO3--ATPase activity was not changed by treatment. Alkaline phosphatase activity was 20 times higher in freshly isolated osteoblastlike cells than in cells grown to confluence in primary culture. In addition, subculturing further reduced the activity of this osteoblast-marker enzyme. The activities of the ion-transporting ATPases and alkaline phosphatase in second passage cells were similar to the activities of these enzymes in fresh, noncalcifying tissues. Nevertheless, second passage cells retain the ability to mineralize an extracellular matrix, and their ion-transporting ATPase and alkaline phosphatase activities are altered when the cells mineralize a matrix.
从兔长骨骨内膜表面获取的成骨细胞样细胞培养物,当每天供应含有新鲜抗坏血酸的培养基时,会形成并矿化细胞外基质。没有这种补充时则不会形成基质。无论是否向培养基中添加碱性磷酸酶的底物β-甘油磷酸,基质都会矿化。测量了未处理、抗坏血酸处理以及抗坏血酸加β-甘油磷酸处理的细胞的离子转运ATP酶活性。抗坏血酸处理的细胞和抗坏血酸加β-甘油磷酸处理的细胞具有相似的酶活性。处理过的细胞中Ca2+-ATP酶、Ca2+,Mg2+-ATP酶和碱性磷酸酶的活性高于未处理细胞中的活性。处理过的细胞中Na+,K+-ATP酶活性低于未处理细胞。HCO3--ATP酶活性不受处理影响。新鲜分离的成骨细胞样细胞中的碱性磷酸酶活性比原代培养中生长至汇合的细胞高20倍。此外,传代培养进一步降低了这种成骨细胞标志物酶的活性。第二代细胞中的离子转运ATP酶和碱性磷酸酶活性与新鲜非钙化组织中这些酶的活性相似。然而第二代细胞仍保留矿化细胞外基质的能力,并且当细胞矿化基质时其离子转运ATP酶和碱性磷酸酶活性会发生改变。