Type 1 diabetes mellitus effects on dental enamel formation revealed by microscopy and microanalysis

Background Type 1 diabetes mellitus (T1DM) largely affects children, occurring therefore at the same period of deciduous and permanent teeth development. The aim of this work was to investigate birefringence and morphology of the secretory stage enamel organic extracellular matrix (EOECM), and struc...

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Veröffentlicht in:Journal of oral pathology & medicine 2018-03, Vol.47 (3), p.306-313
Hauptverfasser: Silva, Bruna Larissa Lago, Medeiros, Danila Lima, Soares, Ana Prates, Line, Sérgio Roberto Peres, Pinto, Maria das Graças Farias, Soares, Telma de Jesus, Espírito Santo, Alexandre Ribeiro
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Sprache:eng
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Zusammenfassung:Background Type 1 diabetes mellitus (T1DM) largely affects children, occurring therefore at the same period of deciduous and permanent teeth development. The aim of this work was to investigate birefringence and morphology of the secretory stage enamel organic extracellular matrix (EOECM), and structural and mechanical features of mature enamel from T1DM rats. Methods Adult Wistar rats were maintained alive for a period of 56 days after the induction of experimental T1DM with a single dose of streptozotocin (60 mg/kg). After proper euthanasia of the animals, fixed upper incisors were accurately processed, and secretory stage EOECM and mature enamel were analyzed by transmitted polarizing and bright field light microscopies (TPLM and BFLM), energy‐dispersive x‐ray (EDX) analysis, scanning electron microscopy (SEM), and microhardness testing. Results Bright field light microscopies and transmitted polarizing light microscopies showed slight morphological changes in the secretory stage EOECM from diabetic rats, which also did not exhibit statistically significant alterations in birefringence brightness when compared to control animals (P > .05). EDX analysis showed that T1DM induced statistically significant little increases in the amount of calcium and phosphorus in outer mature enamel (P  .05). T1DM also caused important ultrastructural alterations in mature enamel as revealed by SEM and induced a statistically significant reduction of about 13.67% in its microhardness at 80 μm from dentin‐enamel junction (P 
ISSN:0904-2512
1600-0714
DOI:10.1111/jop.12669