Development of the microcirculation of the secondary ossification center in rat humeral head.

Sergio Morini, Maria A Continenza, Giuseppe Ricciardi, Eugenio Gaudio, Luigi Pannarale
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引用次数: 29

Abstract

This work investigated the origin and development of microcirculation in the rat humeral head and the expression of vascular endothelial growth factor (VEGF) as a factor supporting the vascular growth and the development of the secondary ossification centers. Sixty rats aging 1, 3-4, 6-8, 11, and 21 days, 5 weeks, and 4 and 8 months were used. Samples of humeral head were collected for histology and immunohistochemistry for VEGF. Some animals were perfused with Mercox resin in order to obtain vascular corrosion casts (vcc) observed by scanning electron microscopy (SEM). No cartilage canals were present at birth. At 6 days postnatal, blood vessels coming from the perichondrium and the region near the capsule attachment invaded the cartilage; at 11 days postnatal, signs of calcification were present and within the third week some bone trabeculae were formed. Just before the vascular invasion of the epiphysis, a positive reaction for VEGF was localized in chondrocytes of the epiphyseal cartilage close to the capsule insertion. During the development and expansion of the secondary ossification center, VEGF expression was higher in chondrocytes but decreased when epiphysis was diffusely ossified. VEGF was expressed also by mesenchymal cells present in and around the fibrous tissue where the secondary ossification center will develop. SEM vcc confirmed that vessels penetrating into the epiphysis arose merely from the periosteal and the capsular networks, and vascular connections with the diaphyseal circulation were not evident. These observations demonstrated that VEGF production by chondrocytes begun some days after birth, supported the rapid vascular growth from the surrounding soft tissues, and was chronologically related to the development of the secondary ossification center in rat proximal humerus. Finally, the possible role of VEGF as mediator of angiogenesis and, at least indirectly, as a trigger factor also in the ossification and the bone remodeling of the secondary ossification centers has been discussed.

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大鼠肱骨头二次骨化中心微循环的发育。
本研究探讨了大鼠肱骨头微循环的起源和发展,以及血管内皮生长因子(VEGF)作为支持血管生长和二级骨化中心发育的因子的表达。选取年龄为1、3 ~ 4、6 ~ 8、11、21天、5周、4、8个月的大鼠60只。取肱骨头标本进行组织病理学和免疫组化检测VEGF。用Mercox树脂灌注部分动物获得血管腐蚀铸型(vcc),扫描电镜观察。出生时没有软骨管。出生后6天,来自软骨膜和被囊附着区附近的血管侵入软骨;在出生后11天,出现钙化的迹象,并在第三周内形成一些骨小梁。就在血管侵入骨骺之前,VEGF的阳性反应局限于靠近囊止点的骨骺软骨的软骨细胞。在继发性骨化中心的发育和扩张过程中,VEGF在软骨细胞中的表达较高,但在骨骺弥漫性骨化时表达降低。纤维组织内和周围的间充质细胞也表达VEGF,而次生骨化中心将在纤维组织内形成。扫描电镜vcc证实,穿透骨骺的血管仅来自骨膜和包膜网,与骨干循环的血管连接不明显。这些观察结果表明,大鼠肱骨近端软骨细胞的VEGF生成始于出生后数天,支持周围软组织血管的快速生长,并与肱骨近端继发性骨化中心的发育有时间上的关系。最后,我们讨论了VEGF作为血管生成介质的可能作用,以及至少间接地作为继发性骨化中心骨化和骨重塑的触发因素。
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