Hussein Ali S, Porntaveetus Thantrira, Abid Mushriq
Department of Orthodontic, College of Dentistry, University of Baghdad, Baghdad, Iraq.
Center of Excellence in Genomics and Precision Dentistry, Department of Physiology, Faculty of Dentistry, Chulalongkorn University, Bangkok, Thailand.
Saudi J Biol Sci. 2022 Oct;29(10):103405. doi: 10.1016/j.sjbs.2022.103405. Epub 2022 Aug 6.
The genetic impact directly or indirectly predefines maxillofacial dimensions, potentially leading to an inappropriate relationship of the jaws and subsequently skeletal malocclusion. Previous studies focused mainly on genetic polymorphisms and class III malocclusion. This study was set out to investigate the association between genetic polymorphisms in two genes (rs235768) and (rs11066446) with Class II division 1 malocclusion, skeletal variation in vertical plane, and maxillary and mandibular jaws length.
Sixty patients classified as Skeletal Class I (n = 30) and Class II division 1 (n = 30) were recruited. DNA was extracted from saliva and analyzed by Sanger sequencing. Lateral cephalometric radiographs were measured for the anterio-posterior relationship of maxillary and mandibular arch using digital tracing. Hardy-Weinberg equilibrium analysis of genotype frequencies was performed using Chi-square test to compare genotype distribution among groups and multiple logistic regression analysis adjusted by gender was also performed.
The rs235768 polymorphism in was associated with hypodivergent face, increased maxillary length, and decreased mandibular length. Meanwhile, the rs11066446 polymorphism in was associated with decreased mandibular length. New polymorphism was identified in (rs10850090) in association with decreased mandibular length.
A potential association between polymorpisms in rs235768 and rs11066446 and rs10850090 and Class II division 1 skeletal malocclusion related phenotypes exists, however, the degree of it has to be further investigated and yet to be discovered.
遗传影响直接或间接预先决定颌面尺寸,可能导致颌骨关系不恰当,进而引发骨骼错牙合畸形。以往研究主要聚焦于基因多态性与III类错牙合畸形。本研究旨在调查两个基因(rs235768)和(rs11066446)中的基因多态性与II类1分类错牙合畸形、垂直平面的骨骼变异以及上颌和下颌长度之间的关联。
招募了60名患者,分为骨骼I类(n = 30)和II类1分类(n = 30)。从唾液中提取DNA并通过桑格测序进行分析。使用数字追踪法对上颌和下颌牙弓的前后关系进行侧位头影测量。采用卡方检验对基因型频率进行哈迪-温伯格平衡分析,以比较各组间的基因型分布,并进行经性别调整的多元逻辑回归分析。
基因中的rs235768多态性与低角面型、上颌长度增加和下颌长度减少有关。同时,基因中的rs11066446多态性与下颌长度减少有关。在基因中发现了新的多态性(rs10850090),其与下颌长度减少有关。
rs235768、rs11066446和rs10850090中的多态性与II类1分类骨骼错牙合畸形相关表型之间可能存在关联,然而,其关联程度有待进一步研究和探索。