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首页> 外文期刊>British Journal of Medicine and Medical Research >Quantitative Analysis of Trace Elements in Sound and Carious Enamel of Primary and Permanent Dentitions
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Quantitative Analysis of Trace Elements in Sound and Carious Enamel of Primary and Permanent Dentitions

机译:牙本质和永久性牙釉质和牙釉质中微量元素的定量分析

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Aims: Quantitative assessment of trace elements in enamel of sound and carious permanent and deciduous teeth, and?evaluation of correlation between the presence of caries and trace elements Study Design: Using powdered enamel from extracted primary and permanent human dentitions and graphite furnace atomic absorption spectrophotometry. Place and Duration of Study: Faculty of Dentistry and clinical Dentistry section of the Jordan University Hospital, between October 2014 and May 2015. Methodology: Forty extracted human deciduous and permanent dentitions were collected from patients attended the dental surgery and pedodontic departments of the Jordan University Hospital. After proper cleaning and drying, four groups of ten teeth each from which enamel samples were collected in four containers labelled as, sound permanent, carious permanent, sound primary, and carious primary enamel. In each group the corresponding teeth were mechanically ground using a different bur; the grinding was within the enamel layer and without exposing dentine. The powdered enamel samples were acid-digested and transferred to liquid solutions in order to measure their content of heavy metal ions by means of Atomic Absorption Spectrophotometer (GFAAS). Results: Eight trace elements were detected, namely, Cu, Pb, Sr, Fe, Mn, Zn, Al, and Se and their concentrations were estimated in all four enamel samples. The concentrations of Sr, Cu, and Fe were significantly higher in sound than in carious enamel of primary and permanent teeth. The concentrations of Al, Mn, and Se were significantly higher in carious than in sound enamel of primary and permanent teeth. Zn and Pb demonstrated comparable concentrations in carious and normal enamel of primary and permanent teeth. Conclusions: In the light of the obtained results, it could be concluded that Sr, Cu, and Fe function as cariostatic elements and there presence enhances caries resistance of primary and permanent teeth, whereas, the presence of Al, Mn, and Se is associated with caries.
机译:目的:定量评估健齿和龋齿恒牙和乳牙中牙釉质中的微量元素,并评估龋齿与微量元素之间的相关性。研究设计:使用从人类原牙和恒牙中提取的搪瓷粉和石墨炉原子吸收分光光度法。研究的地点和时间:2014年10月至2015年5月间,约旦大学医院牙科系和临床牙科科。方法:从约旦大学的牙科外科和牙齿学部门收集了40个提取的人类乳牙和永久牙列医院。经过适当的清洁和干燥后,将四组每组十颗牙齿的牙釉质样品收集在四个分别标记为永久性,龋性,永久性,初级和搪瓷的容器中。在每组中,使用不同的车针对相应的牙齿进行机械研磨;研磨是在牙釉质层内进行的,没有暴露牙质。对粉末状瓷釉样品进行酸消化,然后转移到液体溶液中,以便通过原子吸收分光光度计(GFAAS)测量其重金属离子的含量。结果:检测到八个痕量元素,即Cu,Pb,Sr,Fe,Mn,Zn,Al和Se,并在所有四个搪瓷样品中估计了它们的浓度。声音中的Sr,Cu和Fe的浓度显着高于乳牙和恒牙的龋牙釉质。龋齿中的铝,锰和硒的浓度明显高于乳牙和恒牙的珐琅质。锌和铅在乳牙和普通牙的龋牙和正常牙釉质中的浓度相当。结论:根据获得的结果,可以得出结论,Sr,Cu和Fe可以作为防龋元素,并且其存在可以增强乳牙和恒牙的抗龋性,而Al,Mn和Se的存在则与之相关。龋齿。

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