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Disruption of enamel crystal formation quantified by synchrotron microdiffraction

机译:通过同步加速器微衍射定量分析搪瓷晶体的形成

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Objectives: To understand the pathology of the ultrastructure of enamel affected by systemic disorders which disrupt enamel tissue formation in order to give insight into the precise mechanisms of matrix-mediated biomineralization in dental enamel in health and disease. Methods: Two-dimensional synchrotron X-ray diffraction has been utilized as a sophisticated and useful technique to spatially quantify preferred orientation in mineralized healthy deciduous dental enamel, and the disrupted crystallite organization in enamel affected by a systemic disease affecting bone and dental mineralization (mucopolysaccharidosis Type IVA and Type II are used as examples). The lattice spacing of the hydroxyapatite phase, the crystallite size and aspect ratio, and the quantified preferred orientation of crystallites across whole intact tooth sections, have been determined using synchrotron microdiffraction. Results: Significant differences in mineral crystallite orientation distribution of affected enamel have been observed compared to healthy mineralized tissue. The gradation of enamel crystal orientation seen in healthy tissue is absent in the affected enamel, indicating a continual disruption in the crystallite alignment during mineral formation. Conclusions: This state of the art technique has the potential to provide a unique insight into the mechanisms leading to deranged enamel formation in a wide range of disease states. Clinical relevance: Characterising crystal orientation patterns and geometry in health and following disruption can be a powerful tool in advancing our overall understanding of mechanisms leading to the tissue phenotypes seen clinically. Findings can be used to inform the appropriate dental management of these tissues and/or to investigate the influence of therapeutic interventions or external stressors which may impact on amelogenesis.
机译:目的:了解受系统性疾病影响的釉质超微结构的病理学,这些疾病会破坏釉质组织的形成,以便深入了解健康和疾病中牙釉质基质介导的生物矿化的精确机制。方法:二维同步加速器X射线衍射已被用作一种复杂而有用的技术,用于在空间上定量矿化的健康乳牙釉质中的择优取向,以及受系统疾病影响的釉质中破坏的微晶组织,这种疾病影响了骨骼和牙齿的矿化(粘多糖贮积症)以IVA型和II型为例)。使用同步加速器微衍射测定了羟基磷灰石相的晶格间距,微晶尺寸和纵横比,以及整个完整牙齿部分微晶的定量优选取向。结果:与健康矿化组织相比,受影响的牙釉质的矿物微晶取向分布存在显着差异。在健康组织中可见的釉质晶体取向在受影响的釉质中不存在,表明矿物形成过程中微晶排列的连续破坏。结论:这种最新技术有可能为导致多种疾病状态下釉质错位形成的机理提供独特的见解。临床意义:表征健康和破裂后的晶体取向模式和几何形状可以成为增强我们对导致临床表型的机制的整体理解的有力工具。这些发现可用于告知这些组织的适当牙齿管理和/或调查可能影响牙釉质形成的治疗性干预措施或外部应激源的影响。

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