正常发育新生兔长骨及新生兔和成年兔胫骨转化生长因子- β 2处理后胶原mrna的表达。

The Histochemical Journal Pub Date : 1995-07-01
M A Critchlow, Y S Bland, D E Ashhurst
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引用次数: 0

摘要

正常的长骨横向生长是由骨膜相位骨形成,由骨膜内吸收平衡。在生长过程中,表达胶原mrna的细胞分布的变化是用地高辛标记的核探针来确定的。新生兔胫骨成骨细胞表达I型胶原mRNA存在于骨膜上,早期存在于骨膜内、骨表面和外周腔内。偶有骨细胞表达I型胶原mRNA非常弱。当每天将转化生长因子- β 2 (tgf - β 2)注射到新生动物的骨膜时,这种模式被破坏;骨骼和软骨增生。3日龄家兔胫骨注射20 ng tgf - β 2 3次,可导致表达I型胶原mRNA的骨膜成骨细胞增加。一些内皮成骨细胞和新形成的外周编织骨的骨细胞也表达mRNA。五次注射后,在注射部位周围发现表达II型胶原mRNA的软骨细胞。在老龄家兔身上注射类似的tgf - β 2只诱导纤维组织,其中一些细胞表达I型胶原mRNA。这种mRNA的精确定位表明,I型或II型胶原mRNA的表达分别局限于成骨细胞和软骨细胞。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The expression of collagen mRNAs in normally developing neonatal rabbit long bones and after treatment of neonatal and adult rabbit tibiae with transforming growth factor-beta 2.

Normal transverse growth of long bones is by periosteal appositional bone formation, balanced by endosteal resorption. Changes in the distribution of cells that are expressing collagen mRNAs during growth were determined using digoxigenin-labelled riboprobes. In neonatal rabbit tibiae osteoblasts expressing type I collagen mRNA are found on periosteal, and at early stages on endosteal, bone surfaces and lining peripheral cavities. Occasional osteocytes express type I collagen mRNA very weakly. The pattern is disrupted when transforming growth factor-beta 2 (TGF-beta 2) is injected daily into the periosteum of neonatal animals; there is increased bone, and later cartilage, formation. Three injections of 20 ng TGF-beta 2 onto the tibia of 3-day-old rabbits led to an increase of periosteal osteoblasts that express the mRNA for type I collagen. Some endosteal osteoblasts and osteocytes in newly-formed peripheral woven bone also express the mRNA. After five injections chondrocytes expressing type II collagen mRNA are found around the injection site. Similar injections of TGF-beta 2 in old rabbits induce only fibrous tissue within which some cells express type I collagen mRNA. This precise localization of mRNAs shows that the expression of type I or II collagen mRNA is here restricted to osteoblasts and chondrocytes, respectively.

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