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局部性遗传性牙釉质发育不全导致的显性常染色体遗传牙釉质发育不全中脱落乳牙的结构和成分。该病变由 ENAM 基因突变引起。

The structure and composition of deciduous enamel affected by local hypoplastic autosomal dominant amelogenesis imperfecta resulting from an ENAM mutation.

机构信息

Oral Biology, Leeds Dental Institute, University of Leeds, Leeds, UK.

出版信息

Cells Tissues Organs. 2010;191(4):301-6. doi: 10.1159/000258703. Epub 2009 Nov 14.

Abstract

In a group of families in northern Sweden, a mutation in the ENAM gene (predicted to produce a highly truncated protein) results in the local hypoplastic form of autosomal dominant amelogenesis imperfecta. In this study, sections of deciduous teeth from members of 3 of these families were examined by scanning electron microscopy (SEM) and the enamel mineral was analysed by energy dispersive X-ray spectroscopy (EDX). The sections were also probed with antibodies raised to a conserved sequence of the enamelin protein. Selected intact teeth were first analysed by digital imaging and ascribed with an 'Enamel Defects Index' (EDI) score. SEM of tooth sections revealed disrupted prism morphology and the prisms had a glass-like appearance in some areas. These areas of dysplasia were sometimes irregular but formed regular arrays in others. Comparison of EDI scores with SEM indicated that in one tooth the surface had no measurable defects but significant defects were present in the underlying enamel microstructure. SEM immunohistochemistry with the antibody raised to a fragment of the enamelin protein produced positive, but light, labelling throughout normal enamel. In dysplastic areas, however, the labelling intensity appeared to be reduced. The results indicate that the presence of functional enamelin in the correct amounts is necessary for correct prism morphogenesis. In addition, a combination of EDI and structural analysis indicate that defects in enamel microstructure are not necessarily visible as defects on the surface of the tooth, suggesting the possibility, at least, that some instances of under-diagnosis may occur.

摘要

在瑞典北部的一个家族群体中,ENAM 基因的突变(预计会产生高度截断的蛋白质)导致常染色体显性遗传性牙釉质不全的局部发育不良形式。在这项研究中,通过扫描电子显微镜(SEM)检查了来自这 3 个家族成员的乳牙切片,并用能量色散 X 射线光谱法(EDX)分析了牙釉质矿物质。这些切片还与针对釉蛋白保守序列产生的抗体进行了探测。选择完整的牙齿首先通过数字成像进行分析,并被赋予“牙釉质缺陷指数”(EDI)评分。牙齿切片的 SEM 显示出棱柱形态的破坏,并且在某些区域棱柱具有玻璃状外观。这些发育不良区域有时不规则,但在其他区域形成规则排列。EDI 评分与 SEM 的比较表明,在一颗牙齿中,表面没有可测量的缺陷,但在下面的牙釉质微观结构中存在明显的缺陷。用针对釉蛋白片段产生的抗体进行 SEM 免疫组织化学染色,在正常牙釉质中产生了阳性但微弱的标记。然而,在发育不良区域,标记强度似乎降低。结果表明,适量存在功能性釉蛋白对于正确的棱柱形态发生是必要的。此外,EDI 和结构分析的组合表明,牙釉质微观结构的缺陷不一定在牙齿表面上表现为缺陷,这至少表明可能会发生一些漏诊的情况。

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