Authors
Promila Verma, Rhythm Bains, Aseem Prakash Tikku, Rakesh Kumar Yadav, Pragya Pandey, Maniyalath Hrithu Vinod
Published in
Dental and medical problems. Volume 63. Issue 4. Pages 1077-1082.
Abstract
Clinical use of mineral trioxide aggregate (MTA) is often associated with several challenges, including a prolonged setting time, poor handling characteristics and compromised physical properties in the presence of tissue fluids. Mineral trioxide aggregate, when used as a perforation repair or root-end filling material, needs adequate strength to withstand the forces acting on it. Recently, several researchers have attempted to overcome these challenges through the use of various additives.
To evaluate the physical and antimicrobial properties of MTA reinforced with gold nanoparticles (AuNPs).
Sixteen customized putty molds (6 mm in height x 4 mm in diameter) were filled with the materials assigned to 2 groups: control group, MTA (n = 8); and experimental group, MTA + AuNPs (n = 8). Compressive strength (CS) was evaluated using a universal testing machine, while setting time was assessed using a flat-ended indenter. The antimicrobial properties of MTA and MTA + AuNPs were evaluated using the agar diffusion method against Enterococcus faecalis, Escherichia coli, Pseudomonas aeruginosa, Staphylococcus aureus, and Candida albicans. The data was statistically analyzed using an unpaired t-test.
Compressive strength was significantly higher in the MTA + AuNPs group (115.75 ±2.22 MPa) than in the MTA group (55.00 ±5.35 MPa) (p < 0.001). The MTA + AuNPs group also demonstrated a significantly shorter setting time than the MTA group (48.05 min vs. 165.00 min, respectively). The unpaired t-test revealed a significantly greater antimicrobial activity against all tested microorganisms in the MTA + AuNPs group than in the MTA group (P. aeruginosa > E. coli > S. aureus > E. faecalis > C. albicans).
Incorporation of AuNPs into MTA enhanced CS, shortened setting time and increased antimicrobial activity against the tested microorganisms.
PMID:
42714154
Bibliographic data and abstract were imported from PubMed on 09 Sep 2026.
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