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P. W. Osinaga, R. H. Grande, R. Y. Ballester, M. R. Simionato, C. R. D. Rodrigues and A. Muench, “Zinc Sulfate Addition to Glass-Ionomer-Based Cements: Influence on Physical and Antibacterial Properties, Zinc and Fluoride Release,” Dental Materials, Vol. 19, No. 3, 2003, pp. 212-217. doi:10.1016/S0109-5641(02)00032-5
has been cited by the following article:
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TITLE:
A Novel Antibacterial Dental Resin Composite
AUTHORS:
Yiming Weng, Voon J. Chong, Leah Howard, Ruijie Huang, Richard L. Gregory, Dong Xie
KEYWORDS:
Furanone Derivative; Antibacterial; Resin Composite; CS; S. mutans Viability
JOURNAL NAME:
Journal of Biomaterials and Nanobiotechnology,
Vol.3 No.2,
April
28,
2012
ABSTRACT: This study reports the synthesis and evaluation of a novel furanone-containing antibacterial resin composite. Compres-sive strength (CS) and S. mutans viability were used to evaluate the mechanical strength and antibacterial activity of the composites. With 5% to 30% addition of the furanone derivative, the composite showed no change in CS but a significant antibacterial activity with a 16% - 68% reduction in the S. mutans viability. Further, the antibacterial activity of the modified composite was not affected by human saliva. The aging study implies that the modified composite may have a long-lasting antibacterial function. Within the limitations of this study, it appears that this experimental resin composite may potentially be developed into a clinically attractive dental restorative due to its high mechanical strength and antibacterial function.