4.6 Article

Incorporation of Hybrid Nanomaterial in Dental Porcelains: Antimicrobial, Chemical, and Mechanical Properties

Journal

ANTIBIOTICS-BASEL
Volume 10, Issue 2, Pages -

Publisher

MDPI
DOI: 10.3390/antibiotics10020098

Keywords

antimicrobials; biofilms; biomaterials; dental porcelain; nanoparticles

Funding

  1. Foundation for Research Support of the State of Sao Paulo [2018/03447-0]
  2. Coordination for the Improvement of Higher Education Personnel [001]

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The incorporation of beta-AgVO3 into dental porcelains promoted antimicrobial activity and fracture toughness, reduced biofilm formation, but did not affect P. aeruginosa viability and increased surface roughness.
Biofilm formation on biomaterials is a challenge in the health area. Antimicrobial substances based on nanomaterials have been proposed to solve this problem. The aim was to incorporate nanostructured silver vanadate decorated with silver nanoparticles (beta-AgVO3) into dental porcelains (IPS Inline and Ex-3 Noritake), at concentrations of 2.5% and 5%, and evaluate the surface characteristics (by SEM/EDS), antimicrobial activity (against Streptococcus mutans, Streptococcus sobrinus, Aggregatibacter actinomycetemcomitans, and Pseudomonas aeruginosa), silver (Ag+) and vanadium (V4+/V5+) ions release, and mechanical properties (microhardness, roughness, and fracture toughness). The beta-AgVO3 incorporation did not alter the porcelain's components, reduced the S. mutans, S. sobrinus and A. actinomycetemcomitans viability, increased the fracture toughness of IPS Inline, the roughness for all groups, and did not affect the microhardness of the 5% group. Among all groups, IPS Inline 5% released more Ag+, and Ex-3 Noritake 2.5% released more V4+/V5+. It was concluded that the incorporation of beta-AgVO3 into dental porcelains promoted antimicrobial activity against S. mutans, S. sobrinus, and A. actinomycetemcomitans (preventing biofilm formation), caused a higher release of vanadium than silver ions, and an adequate mechanical behavior was observed. However, the incorporation of beta-AgVO3 did not reduce P. aeruginosa viability and increased the surface roughness of dental porcelains.

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