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双等位基因ALPL突变所致低磷酸酯酶症相关的乳牙列牙体缺损

Dental defects in the primary dentition associated with hypophosphatasia from biallelic ALPL mutations.

作者信息

Kramer K, Chavez M B, Tran A T, Farah F, Tan M H, Kolli T N, Dos Santos E J Lira, Wimer H F, Millán J L, Suva L J, Gaddy D, Foster B L

机构信息

Division of Orthodontics, College of Dentistry, The Ohio State University, Columbus, OH, USA.

Division of Biosciences, College of Dentistry, The Ohio State University, Columbus, OH, USA.

出版信息

Bone. 2021 Feb;143:115732. doi: 10.1016/j.bone.2020.115732. Epub 2020 Nov 4.

Abstract

ALPL encodes tissue-nonspecific alkaline phosphatase (TNAP), an enzyme expressed in bone, teeth, liver, and kidney. ALPL loss-of-function mutations cause hypophosphatasia (HPP), an inborn error-of-metabolism that produces skeletal and dental mineralization defects. Case reports describe widely varying dental phenotypes, making it unclear how HPP comparatively affects the three unique dental mineralized tissues: enamel, dentin, and cementum. We hypothesized that HPP affected all dental mineralized tissues and aimed to establish quantitative measurements of dental tissues in a subject with HPP. The female proband was diagnosed with HPP during childhood based on reduced alkaline phosphatase activity (ALP), mild rachitic skeletal effects, and premature primary tooth loss. The diagnosis was subsequently confirmed genetically by the presence of compound heterozygous ALPL mutations (exon 5: c.346G>A, p.A116T; exon 10: c.1077C>G, p.I359M). Dental defects in 8 prematurely exfoliated primary teeth were analyzed by high resolution micro-computed tomography (micro-CT) and histology. Similarities to the Alpl mouse model of HPP were identified by additional analyses of murine dentoalveolar tissues. Primary teeth from the proband exhibited substantial remaining root structure compared to healthy control teeth. Enamel and dentin densities were not adversely affected in HPP vs. control teeth. However, analysis of discrete dentin regions revealed an approximate 10% reduction in the density of outer mantle dentin of HPP vs. control teeth. All 4 incisors and the molar lacked acellular cementum by micro-CT and histology, but surprisingly, 2 of 3 prematurely exfoliated canines exhibited apparently normal acellular cementum. Based on dentin findings in the proband's teeth, we examined dentoalveolar tissues in a mouse model of HPP, revealing that the delayed initiation of mineralization in the incisor mantle dentin was associated with a broader lack of circumpulpal dentin mineralization. This study describes a quantitative approach to measure effects of HPP on dental tissues. This approach has uncovered a previously unrecognized novel mantle dentin defect in HPP, as well as a surprising and variable cementum phenotype within the teeth from the same HPP subject.

摘要

ALPL基因编码组织非特异性碱性磷酸酶(TNAP),这是一种在骨骼、牙齿、肝脏和肾脏中表达的酶。ALPL功能丧失突变会导致低磷酸酯酶症(HPP),这是一种先天性代谢紊乱疾病,会导致骨骼和牙齿矿化缺陷。病例报告描述了广泛不同的牙齿表型,这使得尚不清楚HPP如何相对影响三种独特的牙齿矿化组织:牙釉质、牙本质和牙骨质。我们假设HPP会影响所有牙齿矿化组织,并旨在对一名HPP患者的牙齿组织进行定量测量。该女性先证者在儿童期被诊断为HPP,依据是碱性磷酸酶活性(ALP)降低、轻度佝偻病样骨骼影响以及乳牙过早脱落。随后通过复合杂合性ALPL突变(外显子5:c.346G>A,p.A116T;外显子10:c.1077C>G,p.I359M)的存在从基因上证实了诊断。通过高分辨率微计算机断层扫描(显微CT)和组织学分析了8颗过早脱落乳牙的牙齿缺陷。通过对小鼠牙槽骨组织的进一步分析确定了与HPP的Alpl小鼠模型的相似之处。与健康对照牙齿相比,先证者的乳牙显示出大量剩余牙根结构。HPP牙齿与对照牙齿相比,牙釉质和牙本质密度未受到不利影响。然而,对离散牙本质区域的分析显示,HPP牙齿与对照牙齿相比,外层罩牙本质密度大约降低了10%。通过显微CT和组织学检查,所有4颗门牙和磨牙均缺乏无细胞牙骨质,但令人惊讶的是,3颗过早脱落的犬牙中有2颗显示出明显正常的无细胞牙骨质。基于先证者牙齿中的牙本质发现,我们检查了HPP小鼠模型中的牙槽骨组织,发现门牙罩牙本质矿化起始延迟与更广泛的牙髓周围牙本质矿化缺乏有关。本研究描述了一种测量HPP对牙齿组织影响的定量方法。这种方法揭示了HPP中一种以前未被认识的新型罩牙本质缺陷,以及来自同一HPP患者牙齿中令人惊讶且多变的牙骨质表型。

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