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Claudin-10 缺乏对釉质形成的影响:来自 HELIX 牙的启示。

Impact of claudin-10 deficiency on amelogenesis: Lesson from a HELIX tooth.

机构信息

Université Paris Cité, URP2496 Pathologies, Imagerie et Biothérapies Orofaciales et Plateforme Imagerie du Vivant (PIV), FHU-DDS-net, IHMOA, Dental School, Montrouge, France.

AP-HP Services de médecine bucco-dentaire, Hôpitaux Universitaires Bretonneau (CRMR phosphore et calcium, filière OSCAR et ERN Bond) and Charles Foix, FHU DDS-net, Ile de France, France.

出版信息

Ann N Y Acad Sci. 2022 Oct;1516(1):197-211. doi: 10.1111/nyas.14865. Epub 2022 Jul 28.

Abstract

In epithelia, claudin proteins are important components of the tight junctions as they determine the permeability and specificity to ions of the paracellular pathway. Mutations in CLDN10 cause the rare autosomal recessive HELIX syndrome (Hypohidrosis, Electrolyte imbalance, Lacrimal gland dysfunction, Ichthyosis, and Xerostomia), in which patients display severe enamel wear. Here, we assess whether this enamel wear is caused by an innate fragility directly related to claudin-10 deficiency in addition to xerostomia. A third molar collected from a female HELIX patient was analyzed by a combination of microanatomical and physicochemical approaches (i.e., electron microscopy, elemental mapping, Raman microspectroscopy, and synchrotron-based X-ray fluorescence). The enamel morphology, formation time, organization, and microstructure appeared to be within the natural variability. However, we identified accentuated strontium variations within the HELIX enamel, with alternating enrichments and depletions following the direction of the periodical striae of Retzius. These markings were also present in dentin. These data suggest that the enamel wear associated with HELIX may not be related to a disruption of enamel microstructure but rather to xerostomia. However, the occurrence of events of strontium variations within dental tissues might indicate repeated episodes of worsening of the renal dysfunction that may require further investigations.

摘要

在上皮细胞中,紧密连接的 Claudin 蛋白是重要的组成部分,因为它们决定了细胞旁途径中离子的通透性和特异性。CLDN10 基因突变会导致罕见的常染色体隐性 HELIX 综合征(少汗、电解质失衡、泪腺功能障碍、鱼鳞病和口干),患者表现出严重的牙釉质磨损。在这里,我们评估这种牙釉质磨损是否是由于 Claudin-10 缺乏引起的固有脆弱性引起的,除了口干之外。我们通过微观解剖学和物理化学方法(即电子显微镜、元素映射、拉曼微光谱和基于同步加速器的 X 射线荧光)分析了一位 HELIX 患者的第三磨牙。牙釉质形态、形成时间、组织和微观结构似乎在自然变异范围内。然而,我们在 HELIX 牙釉质中发现了明显的锶变化,沿着雷特修斯周期性条纹的方向交替出现富集和耗尽。这些标记也存在于牙本质中。这些数据表明,与 HELIX 相关的牙釉质磨损可能与牙釉质微观结构的破坏无关,而与口干有关。然而,牙组织内锶变化事件的发生可能表明肾功能恶化的反复发作,这可能需要进一步调查。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/80b4/9796262/d70bf2a1f6ec/NYAS-1516-197-g005.jpg

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