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软骨细胞培养中软骨基质的钙化:II型胶原C-前肽(软骨钙素)的研究

The calcification of cartilage matrix in chondrocyte culture: studies of the C-propeptide of type II collagen (chondrocalcin).

作者信息

Hinek A, Reiner A, Poole A R

出版信息

J Cell Biol. 1987 May;104(5):1435-41. doi: 10.1083/jcb.104.5.1435.

Abstract

We have shown that when chondrocytes are isolated by collagenase digestion of hyaline cartilage from growth plate, nasal, and epiphyseal cartilages of bovine fetuses they rapidly elaborate an extracellular matrix in culture. Only growth plate chondrocytes can calcify this matrix as ascertained by incorporation of 45Ca2+, detection of mineral with von Kossa's stain and electron microscopy. There is an extremely close direct correlation between 45Ca2+ incorporation in the first 24 h of culture and the content of the C-propeptide of type II collagen, measured by radioimmunoassay, at the time of isolation and during culture. Moreover, growth plate cells have an increased intracellular content of the C-propeptide per deoxyribonucleic acid and, during culture, per hydroxyproline (as a measure of helical collagen) compared with nasal and epiphyseal chondrocytes. In growth plate chondrocytes 24,25-dihydroxycholecalciferol (24,25-[OH]2D3), but not 1,25-dihydroxycholecalciferol alone, stimulates the net synthesis of the C-propeptide and calcification; proteoglycan net synthesis is unaffected. Together, these metabolites of vitamin D further stimulate C-propeptide net synthesis but do not further increase calcification stimulated by 24,25-(OH)2D3. These observations further demonstrate the close correlation between the C-propeptide of type II collagen and the calcification of cartilage matrix.

摘要

我们已经表明,当通过胶原酶消化牛胎儿生长板、鼻软骨和骨骺软骨的透明软骨来分离软骨细胞时,它们在培养中会迅速形成细胞外基质。只有生长板软骨细胞能够使这种基质钙化,这是通过掺入45Ca2+、用冯·科萨染色检测矿物质以及电子显微镜观察确定的。在培养的最初24小时内45Ca2+的掺入量与分离时及培养期间通过放射免疫测定法测量的II型胶原C-前肽含量之间存在极其密切的直接相关性。此外,与鼻软骨和骨骺软骨细胞相比,生长板细胞每单位脱氧核糖核酸以及在培养期间每单位羟脯氨酸(作为螺旋状胶原的指标)的C-前肽细胞内含量增加。在生长板软骨细胞中,24,25-二羟胆钙化醇(24,25-[OH]2D3),而不是单独的1,25-二羟胆钙化醇,刺激C-前肽的净合成和钙化;蛋白聚糖净合成不受影响。维生素D的这些代谢产物共同进一步刺激C-前肽的净合成,但不会进一步增加由24,25-(OH)2D3刺激的钙化。这些观察结果进一步证明了II型胶原C-前肽与软骨基质钙化之间的密切相关性。

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