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磷酸八钙(OCP)的骨膜下植入刺激大鼠胫骨的软骨生成和成骨,但仅刺激大鼠顶骨的成骨。

Subperiosteal implantation of octacalcium phosphate (OCP) stimulates both chondrogenesis and osteogenesis in the tibia, but only osteogenesis in the parietal bone of a rat.

作者信息

Sasano Y, Kamakura S, Nakamura M, Suzuki O, Mizoguchi I, Akita H, Kagayama M

机构信息

Second Department of Oral Anatomy, School of Dentistry, Tohoku University, Sendai, Japan.

出版信息

Anat Rec. 1995 May;242(1):40-6. doi: 10.1002/ar.1092420106.

DOI:10.1002/ar.1092420106
PMID:7604980
Abstract

BACKGROUND

It is not known whether long bones and calvaria have distinct biological characteristics. Octacalcium phosphate (OCP), which is a precursor phase of the hydroxyapatite, has been reported to stimulate bone formation if implanted in the subperiosteal region of mouse calvaria. The present study was designed to investigate how the long bone and the calvarium respond to OCP implantation and to compare their biological characteristics.

METHODS

The synthetic OCP was implanted into the subperiosteal region of rat tibiae and parietal bones being mixed with bovine type I collagen treated by pepsin (Atelocollagen). The biological response was examined histologically and immunohistochemically for collagen matrix phenotypes of types I and II to identify bone and cartilage formation.

RESULTS

Both chondrogenesis and osteogenesis were initiated in the tibia 1 week after implantation of OCP and most of the cartilage was replaced by bone at week 2. However, the parietal bone did not show osteogenesis responding to OCP implantation until week 3, and no cartilage formation was associated with the osteogenesis.

CONCLUSIONS

The present study demonstrated the distinct characteristics of biological response to OCP implantation between the long bone and the calvarium in terms of whether or not cartilage formation is involved in the stimulated osteogenesis by OCP, and in terms of timing of the stimulated chondrogenesis and/or osteogenesis, i.e., the parietal bone takes more time to respond to OCP implantation than the tibia.

摘要

背景

目前尚不清楚长骨和颅骨是否具有不同的生物学特性。磷酸八钙(OCP)是羟基磷灰石的前体阶段,据报道,如果将其植入小鼠颅骨的骨膜下区域,可刺激骨形成。本研究旨在探讨长骨和颅骨对OCP植入的反应方式,并比较它们的生物学特性。

方法

将合成的OCP与经胃蛋白酶处理的牛I型胶原(去端肽胶原)混合后,植入大鼠胫骨和顶骨的骨膜下区域。通过组织学和免疫组织化学检查I型和II型胶原基质表型的生物学反应,以确定骨和软骨的形成。

结果

在植入OCP后1周,胫骨中开始出现软骨生成和成骨,在第2周时,大部分软骨被骨取代。然而,顶骨直到第3周才对OCP植入产生成骨反应,且成骨过程中没有软骨形成。

结论

本研究表明,长骨和颅骨对OCP植入的生物学反应具有明显特征,体现在OCP刺激成骨过程中是否涉及软骨形成,以及刺激软骨生成和/或成骨的时间,即顶骨对OCP植入的反应比胫骨需要更多时间。

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Autologous engineering of cartilage.
自体软骨工程。
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