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VII 型胶原缺陷导致成釉细胞分化不良,从而引起牙釉质形成缺陷。

Type VII collagen deficiency causes defective tooth enamel formation due to poor differentiation of ameloblasts.

机构信息

Department of Dermatology, Hokkaido University Graduate School of Medicine, Sapporo, Japan.

出版信息

Am J Pathol. 2012 Nov;181(5):1659-71. doi: 10.1016/j.ajpath.2012.07.018. Epub 2012 Aug 31.

Abstract

Recessive dystrophic epidermolysis bullosa (RDEB) is caused by mutations in the gene encoding type VII collagen (COL7), a major component of anchoring fibrils in the epidermal basement membrane zone. Patients with RDEB present a low oral hygiene index and prevalent tooth abnormalities with caries. We examined the tooth enamel structure of an RDEB patient by scanning electron microscopy. It showed irregular enamel prisms, indicating structural enamel defects. To elucidate the pathomechanisms of enamel defects due to COL7 deficiency, we investigated tooth formation in Col7a1(-/-) and COL7-rescued humanized mice that we have established. The enamel from Col7a1(-/-) mice had normal surface structure. The enamel calcification and chemical composition of Col7a1(-/-) mice were similar to those of the wild type. However, transverse sections of teeth from the Col7a1(-/-) mice showed irregular enamel prisms, which were also observed in the RDEB patient. Furthermore, the Col7a1(-/-) mice teeth had poorly differentiated ameloblasts, lacking normal enamel protein-secreting Tomes' processes, and showed reduced mRNA expression of amelogenin and other enamel-related molecules. These enamel abnormalities were corrected in the COL7-rescued humanized mice expressing a human COL7A1 transgene. These findings suggest that COL7 regulates ameloblast differentiation and is essential for the formation of Tomes' processes. Collectively, COL7 deficiency is thought to disrupt epithelial-mesenchymal interactions, leading to defective ameloblast differentiation and enamel malformation in RDEB patients.

摘要

隐性营养不良型大疱性表皮松解症(RDEB)是由编码 VII 型胶原(COL7)的基因突变引起的,COL7 是表皮基底膜带锚定纤维的主要成分。RDEB 患者的口腔卫生指数较低,牙齿异常且普遍发生龋齿。我们通过扫描电子显微镜检查了 RDEB 患者的牙釉质结构。结果显示牙釉质棱柱不规则,表明存在结构型牙釉质缺陷。为了阐明 COL7 缺乏导致牙釉质缺陷的发病机制,我们研究了我们建立的 Col7a1(-/-)和 COL7 挽救的人源化小鼠的牙齿形成。Col7a1(-/-) 小鼠的牙釉质具有正常的表面结构。Col7a1(-/-) 小鼠的牙釉质钙化和化学成分与野生型相似。然而,Col7a1(-/-) 小鼠牙齿的横切面显示牙釉质棱柱不规则,这在 RDEB 患者中也观察到。此外,Col7a1(-/-) 小鼠的牙釉质中分化不良的成釉细胞缺乏正常的分泌釉原蛋白的 Tomes'突,并且釉原蛋白和其他牙釉质相关分子的 mRNA 表达减少。在表达人 COL7A1 转基因的 COL7 挽救的人源化小鼠中,这些牙釉质异常得到了纠正。这些发现表明 COL7 调节成釉细胞分化,是 Tomes'突形成所必需的。总之,COL7 缺乏被认为破坏了上皮-间充质相互作用,导致 RDEB 患者的成釉细胞分化缺陷和牙釉质畸形。

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