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转化生长因子-β对软骨细胞的直接作用是以细胞成熟特异性方式由维生素D代谢产物调节的。

Direct effects of transforming growth factor-beta on chondrocytes are modulated by vitamin D metabolites in a cell maturation-specific manner.

作者信息

Schwartz Z, Bonewald L F, Caulfield K, Brooks B, Boyan B D

机构信息

Hebrew University, Hadassah Faculty of Dental Medicine, Jerusalem, Israel.

出版信息

Endocrinology. 1993 Apr;132(4):1544-52. doi: 10.1210/endo.132.4.8462452.

Abstract

Chondrocytes in the endochondral differentiation pathway produce transforming growth factor-beta (TGF-beta) and response to this growth factor both in vitro and in vivo. To clarify the role that cell maturation state plays in the response, we used a well characterized chondrocyte cell culture model which compares cartilage cells at two different stages of maturation. Confluent fourth passage cultures of rat costochondral resting zone and growth zone cartilage cells were incubated with recombinant human (rh) TGF-beta-1 for 24, 48, or 72 h, and the effect on cell number and [3H]thymidine incorporation was observed. To assess whether TGF-beta regulates chondrocyte differentiation to a calcifying cartilage phenotype, cells were incubated for 24 h with TGF-beta, and the specific activities of alkaline phosphatase and phospholipase A2, two enzymes associated with calcification, were assayed in isolated plasma membranes and matrix vesicles. Alkaline phosphatase-specific activity was also measured in the cell layer. Modulation of TGF-beta action by vitamin D metabolites, also known to regulate endochondral differentiation, was examined. The ability of the chondrocytes to produce latent TGF-beta was assayed. The results show that: 1) quiescent chondrocytes at two stages of endochondral maturation respond to rhTGF-beta-1 by increasing [3H]thymidine incorporation; 2) growth zone cells exhibit no increase in cell number over a 72-h incubation with TGF-beta, whereas resting zone cells exhibit a dose-dependent increase in cell number at 72 h; 3) nonquiescent cells exhibit an increase in alkaline phosphatase-specific activity at 24 h; 4) the effects on this membrane enzyme are comparable in the plasma membranes and matrix vesicles, but the net effect is greater in the extracellular organelle due to the intrinsically higher levels of activity; 5) although differentiation is promoted in resting zone cells, it is limited in the growth zone cells by inhibition of phospholipase A2 activity; and 6) there is a synergistic enhancement of resting zone chondrocyte differentiation when cells are exposed to rhTGF-beta-1 and 24,25-dihydroxyvitamin D3.

摘要

软骨内分化途径中的软骨细胞会产生转化生长因子-β(TGF-β),并且在体外和体内对这种生长因子都有反应。为了阐明细胞成熟状态在该反应中所起的作用,我们使用了一个特征明确的软骨细胞培养模型,该模型比较了处于两个不同成熟阶段的软骨细胞。将汇合的大鼠肋软骨静止区和生长区软骨细胞的第四代培养物与重组人(rh)TGF-β-1孵育24、48或72小时,并观察其对细胞数量和[3H]胸苷掺入的影响。为了评估TGF-β是否将软骨细胞分化调节为钙化软骨表型,将细胞与TGF-β孵育24小时,并在分离的质膜和基质小泡中测定与钙化相关的两种酶——碱性磷酸酶和磷脂酶A2的比活性。还在细胞层中测量了碱性磷酸酶的比活性。研究了已知也调节软骨内分化的维生素D代谢产物对TGF-β作用的调节。测定了软骨细胞产生潜伏性TGF-β的能力。结果表明:1)软骨内成熟两个阶段的静止软骨细胞通过增加[3H]胸苷掺入对rhTGF-β-1有反应;2)生长区细胞在与TGF-β孵育72小时期间细胞数量没有增加,而静止区细胞在72小时时细胞数量呈剂量依赖性增加;3)非静止细胞在24小时时碱性磷酸酶比活性增加;4)对这种膜酶的影响在质膜和基质小泡中相当,但由于细胞外细胞器中固有的较高活性水平,净效应在细胞外细胞器中更大;5)尽管静止区细胞中促进了分化,但在生长区细胞中由于磷脂酶A2活性的抑制而受到限制;6)当细胞暴露于rhTGF-β-1和24,25-二羟基维生素D3时,静止区软骨细胞分化有协同增强作用。

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