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软骨调节素-I基因缺陷小鼠骨折痂形成的改变

Altered fracture callus formation in chondromodulin-I deficient mice.

作者信息

Yukata Kiminori, Matsui Yoshito, Shukunami Chisa, Takimoto Aki, Goto Tomohiro, Nishizaki Yuriko, Nakamichi Yuko, Kubo Takahiro, Sano Toshiaki, Kato Shigeaki, Hiraki Yuji, Yasui Natsuo

机构信息

Department of Orthopedics, Institute of Health Biosciences, The University of Tokushima Graduate School, 3-18-15 Kuramoto, Tokushima 770-8503, Japan.

出版信息

Bone. 2008 Dec;43(6):1047-56. doi: 10.1016/j.bone.2008.08.111. Epub 2008 Aug 22.

Abstract

Chondromodulin-I (Chm-I) is a glycoprotein that stimulates the growth of chondrocytes and inhibits angiogenesis in vitro. Mice lacking the Chm1 gene show abnormal bone metabolism and pathological angiogenesis in cardiac valves in the mature stage although they develop normally without aberrations in endochondral bone formation during embryogenesis or in cartilage development during growth. These findings indicate that Chm-I is critical under conditions of stress such as bone repair through endochondral ossification of a fracture callus. We carried out the present study to examine the expression and role of Chm-I in bone repair using a stabilized tibial fracture model, and compared fracture healing in Chm1 knockout (Chm1(-/-)) mice with that in wild-type mice. Chm-I mRNA and protein localized in the external cartilaginous callus in the reparative phase of fracture healing. Radiological examination showed a delayed union in Chm1(-/-) mice although the fracture site was covered with both external and internal calluses. Chm1 null mutation reduced external cartilaginous callus formation as judged by marked decrease of type X collagen alpha 1 (Col10a1) expression and the total amount of cartilage matrix. Interestingly, the majority of chondrocytes in the periosteal callus failed to differentiate into mature chondrocytes in Chm1(-/-) mice, while the hypertrophic maturation of chondrocytes between the cortices was not affected. These results suggest that Chm-I is involved in hypertrophic maturation of periosteal chondrocytes. Although a direct effect of Chm-I on bones is still unclear, bony callus formation was increased while external cartilaginous callus decreased in Chm1(-/-) mice. We conclude that in the absence of Chm1, predominant primary bone healing occurs due to an indirect effect induced by reduction of cartilaginous callus rather than to a direct effect on osteogenic function, resulting in a delayed union.

摘要

软骨调节素-I(Chm-I)是一种糖蛋白,在体外可刺激软骨细胞生长并抑制血管生成。缺乏Chm1基因的小鼠在成熟阶段表现出异常的骨代谢和心脏瓣膜病理性血管生成,尽管它们在胚胎发育过程中软骨内骨形成或生长过程中的软骨发育均正常,无异常。这些发现表明,Chm-I在诸如通过骨折痂软骨内骨化进行骨修复等应激条件下至关重要。我们进行了本研究,以使用稳定的胫骨骨折模型研究Chm-I在骨修复中的表达和作用,并比较Chm1基因敲除(Chm1(-/-))小鼠与野生型小鼠的骨折愈合情况。Chm-I mRNA和蛋白定位于骨折愈合修复期的外部软骨痂中。放射学检查显示Chm1(-/-)小鼠骨折愈合延迟,尽管骨折部位被内、外骨痂覆盖。Chm1基因无效突变导致X型胶原α1(Col10a1)表达明显降低和软骨基质总量减少,从而减少了外部软骨痂形成。有趣的是,在Chm1(-/-)小鼠中,骨膜骨痂中的大多数软骨细胞未能分化为成熟软骨细胞,而皮质间软骨细胞的肥大成熟未受影响。这些结果表明,Chm-I参与骨膜软骨细胞的肥大成熟。尽管Chm-I对骨骼的直接作用仍不清楚,但在Chm1(-/-)小鼠中,骨痂形成增加而外部软骨痂减少。我们得出结论,在缺乏Chm1的情况下,由于软骨痂减少诱导的间接作用而非对成骨功能的直接作用,导致主要的一期骨愈合,从而导致骨折愈合延迟。

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