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体外培养小鼠牙齿发育过程中牙基底膜的降解

Degradation of the dental basement membrane during mouse tooth development in vitro.

作者信息

Kjoelby M, Thesleff I, Sahlberg C, Fejerskov O, Josephsen K

机构信息

Department of Dental Pathology, Operative Dentistry and Endodontics, Royal Dental College, University of Aarhus, Denmark.

出版信息

Int J Dev Biol. 1994 Sep;38(3):455-62.

PMID:7848829
Abstract

During tooth development, the basement membrane is degraded at the late bell stage, but the developmental significance of this event is not known. Organ culture offers a method where developmental processes can be manipulated in controlled conditions. We cultured bell-stage tooth germs either in a chemically defined or a serum-containing medium and analyzed the degradation of the basement membrane by different methods. Type IV collagen was present throughout the dental basement membranes at the epithelial-mesenchymal interface at the onset of culture. After 10 days of culture, irrespective of the medium used, type IV collagen and laminin had disappeared from the cuspal areas but were present at the cervical loop. As was the case in vivo, the expression of 72 kDa type IV collagenase gene was intense in the differentiating preodontoblasts and in the odontoblasts during secretion of the first predentin matrix near the cuspal tips. Ultrastructural observations showed that the basal lamina had been removed in all cultured tooth organs. Also, the breakdown of the basement membrane occurred irrespective of the presence of mineral in the dentin matrix. Our observations suggest in contrast to earlier observations, that there are no major differences in basic events leading to dentino- and amelogenesis, when tooth organs are cultured in the presence or absence of serum.

摘要

在牙齿发育过程中,基底膜在钟状期末期降解,但其发育意义尚不清楚。器官培养提供了一种可在可控条件下操纵发育过程的方法。我们将钟状期牙胚在化学成分明确的培养基或含血清的培养基中培养,并通过不同方法分析基底膜的降解情况。培养开始时,IV型胶原存在于上皮-间充质界面的整个牙基底膜中。培养10天后,无论使用何种培养基,IV型胶原和层粘连蛋白在牙尖区域消失,但在颈环处仍存在。与体内情况一样,在牙尖附近分泌第一层前期牙本质基质时,72 kDa IV型胶原酶基因在分化中的前成牙本质细胞和成牙本质细胞中表达强烈。超微结构观察表明,所有培养的牙器官中的基膜均已去除。此外,无论牙本质基质中是否存在矿物质,基底膜都会发生降解。与早期观察结果相反,我们的观察结果表明,在有或无血清的情况下培养牙器官时,导致牙本质形成和釉质形成的基本事件没有重大差异。

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