Title of article :
Connective tissue reaction to white and gray MTA mixed with distilled water or chlorhexidine in rats
Author/Authors :
Yavari, Hamid Reza Dental School - Tabriz University of Medical Sciences , Shahi, Shahriar Dental School - Tabriz University of Medical Sciences , Rahimi, Saeed Dental School - Tabriz University of Medical Sciences , Shakouie, Sahar Dental School - Tabriz University of Medical Sciences , Roshangar, Leila Histology Department - Medical School - Tabriz University of Medical Sciences , Mesgari Abassi, Mehran Member of Drug Applied Research Center - Tabriz University of Medical Sciences , Sattari Khavas, Sahar
Pages :
6
From page :
25
To page :
30
Abstract :
INTRODUCTION: The purpose of this study was to compare the histocompatibility of white (WMTA) and gray (GMTA) mineral trioxide aggregate mixed with 0.12% chlorhexidine (CHX) and distilled water (DW) in subcutaneous connective tissues of rats. MATERIALS and METHODS: The freshly mixed WMTA and GMTA with CHX or DW were inserted in polyethylene tubes and implanted into dorsal subcutaneous connective tissue of 50 Wistar Albino rats; tissue biopsies were collected and were then examined histologically 7, 15, 30, 60 and 90 days after the implantation procedure. The histology results were scored from 1-4; score 4 was considered as the worst finding. Data were analyzed using one-way ANOVA tests. RESULTS: All experimented materials were tolerated well by the connective tissues after 90-day evaluation, except for the WMTA/CHX group that had significantly more mean inflammatory scores (P<0.001). There was a statistically significant difference in the mean inflammation grades between experimental groups in each interval (P<0.001). After 90 days, GMTA/CHX group had the lowest inflammatory score. CONCLUSION: Although adding CHX to WMTA produces significantly higher inflammatory response, it seems a suitable substitute for DW in combination with GMTA. Further research is necessary to recommend this mixture for clinical use.
Keywords :
Biocompatibility , Chlorhexidine gluconate , Mineral trioxide aggregate
Journal title :
Astroparticle Physics
Serial Year :
2009
Record number :
2421475
Link To Document :
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