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Analysis of the surface characteristics and mineralization status of feline teeth using scanning electron microscopy

机译:用扫描电子显微镜分析猫牙齿的表面特征和矿化状态

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摘要

External resorption of teeth by odontoclasts is a common condition of unknown origin affecting domestic cats. Odontoclastic resorptive lesions involve the enamel cementum junction (ECJ, cervix) and root surface, leading to extensive loss of enamel, dentine and cementum. This study was undertaken in order to determine whether features of the surface anatomy and mineralization of feline teeth could explain why odontoclastic resorptive lesions are so prevalent in this species. Backscattered electron scanning electron microscopy was used to study enamel, cementum and dentine in non-resorbed, undemineralized teeth from adult cats. Analysis of the ECJ revealed thin enamel and cementum and exposed dentine at this site. Furthermore, enamel mineralization decreased from the crown tip to the ECJ, and dentine mineralization was lowest at the ECJ and cervical root. Analysis of cementum revealed variations in the organization and composition of fibres between the cervical, mid- and apical root although no significant differences in mineralization of cementum were detected between different regions of the root. Reparative patches associated with resorption of cementum by odontoclasts and repair by cementoblasts were present on the root surface. In conclusion, results suggest that the ECJ and cervical dentine could be at a greater risk of destruction by odontoclasts compared with other regions of the tooth. The relationship of these features to the development and progression of resorption now requires further examination.
机译:牙齿破骨细胞对牙齿的外部吸收是影响家猫的不明来源的常见情况。牙质碎裂吸收性病变累及釉质牙骨质交界处(ECJ,子宫颈)和牙根表面,导致牙釉质,牙本质和牙骨质大量丢失。进行这项研究是为了确定猫牙齿的表面解剖结构和矿化特征是否可以解释为什么齿牙质吸收性病变在该物种中如此普遍。反向散射电子扫描电子显微镜用于研究成年猫未吸收,未脱矿化牙齿中的牙釉质,牙骨质和牙本质。对ECJ的分析显示该部位牙釉质和牙骨质稀薄,牙质裸露。此外,从冠尖到ECJ的牙釉质矿化减少,而在ECJ和颈根处的牙本质矿化最低。牙骨质的分析显示,虽然在牙根的不同区域之间未发现牙骨质矿化的显着差异,但颈根,中根和根尖之间的纤维组织和组成存在变化。与牙质破骨细胞吸收牙骨质和牙骨质细胞修复相关的修复斑块存在于根表面。总之,结果表明,与牙齿的其他区域相比,ECJ和宫颈牙质可能被齿破骨细胞破坏的风险更大。这些特征与吸收发展和进展之间的关系现在需要进一步检查。

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