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Mineral trioxide aggregate enriched with iron disulfide nanostructures: an evaluation of their physical and biological properties
被引:2
|作者:
Argueta-Figueroa, Liliana
[1
]
Delgado-Garcia, Jose J.
[2
]
Garcia-Contreras, Rene
[1
]
Martinez-Alvarez, Omar
[3
]
Santos-Cruz, Jose
[4
]
Oliva-Martinez, Carlos
[1
]
Acosta-Torres, Laura S.
[1
]
de la Fuente-Hernandez, Javier
[1
]
Arenas-Arrocena, Ma C.
[1
]
机构:
[1] Univ Nacl Autonoma Mexico, Escuela Nacl Estudios Super Unidad Leon, Area Nanoestruct & Biomat, Lab Invest Interdisciplinaria, Blvd UNAM 2011, Guanajuato 37684, Mexico
[2] Univ Guanajuato, Div Ciencias & Ingn, Guanajuato, Mexico
[3] Univ Guanajuato, Dept Ingn Energia, Guanajuato, Mexico
[4] Univ Autonoma Queretaro, Fac Quim, Energia Mat, Queretaro, Mexico
关键词:
antibacterial;
cytotoxicity;
nanostructures;
rheological properties;
END FILLING MATERIALS;
ROOT-CANAL SEALERS;
PORTLAND-CEMENT;
ENTEROCOCCUS-FAECALIS;
CALCIUM-CHLORIDE;
SEALING ABILITY;
SETTING TIME;
MTA;
CYTOTOXICITY;
BIOCOMPATIBILITY;
D O I:
10.1111/eos.12408
中图分类号:
R78 [口腔科学];
学科分类号:
1003 ;
摘要:
The purpose of this study was to characterize mineral trioxide aggregates (MTA) enriched with iron disulfide (FeS2) nanostructures at different concentrations, and to investigate their storage modulus, radiopacity, setting time, pH, cytotoxicity, and antimicrobial activity. Iron disulfide nanostructures [with particle size of 0.357 +/- 0.156 lm (mean +/- SD)] at weight ratios of 0.2, 0.4, 0.6, 0.8, and 1.0 wt% were added to white MTA (wMTA). The radiopacity, rheological properties, setting time, and pH, as well as the cytotoxicity (assessed using the MTT assay) and antibacterial activity (assessed using the broth microdilution test) were determined for MTA/FeS2 nanostructures. The nanostructures did not modify the radiopacity values of wMTA (similar to 6 mm of aluminium); however, they reduced the setting time from 18.2 +/- 3.20 min to 13.7 +/- 1.8 min, and the storage modulus was indicative of a good stiffness. Whereas the MTA/FeS2 nanostructures did not induce cytotoxicity when in contact with human pulp cells (HPCs) and human gingival fibroblasts (HGFs), they showed bacteriostatic activity against Staphylococcus aureus, Escherichia coli, and Enterococcus faecalis. Adding FeS2 nanostructures to MTA might be an option for improving the root canal sealing and antibacterial effects of wMTA in endodontic treatments.
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页码:234 / 243
页数:10
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