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剖析骨骼-错颌畸形相关表型的复杂性:小鼠来拯救。

Dissecting the Complexity of Skeletal-Malocclusion-Associated Phenotypes: Mouse for the Rescue.

机构信息

Department of Clinical Microbiology and Immunology, Sackler Faculty of Medicine, Tel-Aviv University, Tel-Aviv 6997801, Israel.

Department of Oral and Maxillofacial Surgery, Baruch Padeh Medical Center Poriya, Poriya 1520800, Israel.

出版信息

Int J Mol Sci. 2023 Jan 29;24(3):2570. doi: 10.3390/ijms24032570.

Abstract

Skeletal deformities and malocclusions being heterogeneous traits, affect populations worldwide, resulting in compromised esthetics and function and reduced quality of life. Skeletal Class III prevalence is the least common of all angle malocclusion classes, with a frequency of 7.2%, while Class II prevalence is approximately 27% on average, varying in different countries and between ethnic groups. Orthodontic malocclusions and skeletal deformities have multiple etiologies, often affected and underlined by environmental, genetic and social aspects. Here, we have conducted a comprehensive search throughout the published data until the time of writing this review for already reported quantitative trait loci (QTL) and genes associated with the development of skeletal deformation-associated phenotypes in different mouse models. Our search has found 72 significant QTL associated with the size of the mandible, the character, shape, centroid size and facial shape in mouse models. We propose that using the collaborative cross (CC), a highly diverse mouse reference genetic population, may offer a novel venue for identifying genetic factors as a cause for skeletal deformations, which may help to better understand Class III malocclusion-associated phenotype development in mice, which can be subsequently translated to humans. We suggest that by performing a genome-wide association study (GWAS), an epigenetics-wide association study (EWAS), RNAseq analysis, integrating GWAS and expression quantitative trait loci (eQTL), micro and small RNA, and long noncoding RNA analysis in tissues associated with skeletal deformation and Class III malocclusion characterization/phenotypes, including mandibular basic bone, gum, and jaw, in the CC mouse population, we expect to better identify genetic factors and better understand the development of this disease.

摘要

骨骼畸形和错颌是异质特征,影响全球人群,导致美观和功能受损,生活质量下降。骨骼 III 类错颌是所有角度错颌中最不常见的,发生率为 7.2%,而 II 类错颌的发生率平均约为 27%,在不同国家和种族群体之间存在差异。正畸错颌和骨骼畸形有多种病因,通常受到环境、遗传和社会因素的影响和强调。在这里,我们对已发表的数据进行了全面检索,截至撰写本综述时,已经报告了与不同小鼠模型中骨骼变形相关表型发展相关的数量性状基因座 (QTL) 和基因。我们的搜索发现了 72 个与下颌骨大小、特征、形状、质心大小和面部形状相关的显著 QTL。我们提出,使用高度多样化的小鼠参考遗传群体——协作交叉 (CC),可能为鉴定骨骼畸形的遗传因素提供新的途径,这有助于更好地理解小鼠中 III 类错颌相关表型的发展,随后可以将其转化为人类。我们建议通过全基因组关联研究 (GWAS)、表观遗传学全基因组关联研究 (EWAS)、RNAseq 分析、GWAS 和表达数量性状基因座 (eQTL)、微小 RNA 和小 RNA、长非编码 RNA 分析在与骨骼变形和 III 类错颌特征/表型相关的组织中,包括下颌基本骨、牙龈和颌骨,在 CC 小鼠群体中,我们期望更好地鉴定遗传因素并更好地理解该疾病的发展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7b26/9916875/def56a2c3fec/ijms-24-02570-g001.jpg

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