Ekanayake S, Hall B K
Department of Biology, Dalhousie University, Halifax, Nova Scotia, Canada.
Int J Dev Biol. 1994 Dec;38(4):683-94.
Meckel's cartilage in the avian mandible is a neural crest-derived permanent cartilage. To investigate whether chondrocytes that form Meckel's cartilage can be induced to undergo maturation and mineralization by manipulating the environment, we used in vitro micromass culture in which young embryonic mandibular ectomesenchymal cells were maintained at a high cell density (2 x 10(7) cells/ml) and treated with ascorbic acid (AA) or with dexamethasone and ascorbic acid (DEX + AA). Chondrogenesis and chondrocyte maturation were analyzed by histological, immunohistochemical and SDS/PAGE techniques. Chick mandibular ectomesenchymal cells from Hamburger and Hamilton (J. Morphol. 88:49-92, 1951) stage 21 (HH stage 21) chick embryos undergo chondrogenesis forming cartilage nodules when maintained under micromass culture conditions. These chondrocytes undergo maturation in response to AA but not DEX. Addition of AA to culture medium induced type X collagen expression by these chondrocytes. With prolonged culture, chondrocytes began to mineralize turning cartilage nodules into completely mineralized structures. There was no correlation between chondrocyte size and type X collagen expression. Small chondrocytes as well as large (hypertrophic) chondrocytes expressed type X collagen and then underwent mineralization. Co-treatment of cultures with DEX + AA caused reduction of chondrogenesis and inhibited chondrocyte maturation and mineralization seen with AA alone.
鸟类下颌骨中的梅克尔软骨是一种神经嵴衍生的永久性软骨。为了研究通过操纵环境是否能诱导形成梅克尔软骨的软骨细胞成熟和矿化,我们采用了体外微团培养法,即将年轻胚胎下颌外胚间充质细胞维持在高细胞密度(2×10⁷个细胞/毫升),并用抗坏血酸(AA)或地塞米松与抗坏血酸(DEX + AA)进行处理。通过组织学、免疫组织化学和SDS/PAGE技术分析软骨形成和软骨细胞成熟情况。来自汉伯格和汉密尔顿(《形态学杂志》88:49 - 92, 1951)第21阶段(HH阶段21)鸡胚的鸡下颌外胚间充质细胞在微团培养条件下会发生软骨形成,形成软骨结节。这些软骨细胞对AA有反应而成熟,但对DEX无反应。向培养基中添加AA可诱导这些软骨细胞表达X型胶原蛋白。随着培养时间延长,软骨细胞开始矿化,使软骨结节变成完全矿化的结构。软骨细胞大小与X型胶原蛋白表达之间没有相关性。小软骨细胞以及大的(肥大)软骨细胞都表达X型胶原蛋白,然后进行矿化。用DEX + AA共同处理培养物会导致软骨形成减少,并抑制单独使用AA时所见到的软骨细胞成熟和矿化。