Effect of blood contamination on marginal adaptation and surface microstructure of mineral trioxide aggregate: a SEM study

Message:
Abstract:
Background And Aims
In various clinical situations, mineral trioxide aggregate (MTA) may come into direct contact with blood. The aim of the present study was to evaluate the effect of exposure to blood on marginal adaptation and surface microstructure of MTA.
Materials And Methods
Thirty extracted human single-rooted teeth were used in this study. Standard root canal treatment was carried out. Root-ends were resected, and retrocavities were prepared. The teeth were randomly divided into the following two groups (n=15): In group 1, the internal surface of the cavities was coated with blood. Then, the cavities were filled with MTA. The roots were immersed in molds containing fresh blood. In group 2, the aforementioned procedures were performed except that synthetic tissue fluid (STF) was used instead of fresh blood. After incubation, the specimens were prepared for scanning electron microscopic analysis. To assess the marginal adaptation, “gap perimeter” and “maximum gap width” were measured, respectively. The surface microstructure was also examined at higher magnifications. Independent samples t-test and Mann-Whitney U test were used to analyze data.
Results
Maximum gap width and gap perimeter in the blood-exposed group were significantly larger than those in the STF-exposed group (p)
Language:
English
Published:
Journal of Dental Research, Dental Clinics, Dental Prospects, Volume:7 Issue: 3, Summer 2013
Pages:
157 to 163
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