Open Access
Biological and mechanical properties of a self-curing acrylic resin enriched with AgNPs as a proposal for orthopedic aparatology
Christian Andrea Lopez-Ayuso
1
,
Rene Garcia-Contreras
1
,
Ravichandran Manisekaran
1
,
Mario Figueroa
2
,
Manuel Rangel Grimaldo
3
,
Mariano Jacome
2
,
Rubén Abraham Domínguez Pérez
4
,
Salvador Lopez-Morales
5
,
Sol Cristians
6
,
L.S. Acosta-Torres
1
Publication type: Journal Article
Publication date: 2025-02-04
scimago Q1
wos Q2
SJR: 0.974
CiteScore: 8.6
Impact factor: 4.6
ISSN: 25160230
Abstract
Polymethylmethacrylate (PMMA) is widely used in dentistry, but its inherent characteristics, such as roughness and porosity, can facilitate the formation of bacterial biofilms. However, the integration of silver nanoparticles (AgNPs) can provide antimicrobial properties. Ongoing research endeavors aim to preserve post-nanoaggregation biocompatibility without compromising the mechanical integrity of the material. In this study, we investigated the biological and mechanical attributes of a PMMA nanocomposite infused with AgNPs biosynthesized from Pelargonium × hortorum. A method has been described to incorporate nanoparticles into the polymer at minimum concentrations. In the results, LC-MS-MS revealed the presence of 56 biochemical compounds. UPLCHRESIMS-MS/MS was used to compare the phytochemical profiles of the leaf extract of Pelargonium × hortorum before and after the formation of AgNPs, which were identified with spherical morphology, an absorbance of 28.5 ± 8.16 nm and a particle size of 415 nm. The MIC of AgNPs was 10 μg mL−1. In bacterial MTT, a decrease to 18.2 ± 2.5% with PMMA-10 μg mL−1 was observed (p < 0.05). Decreased cell viability was found only in PMMA-0 μg mL−1 at 89.1 ± 6.7%, indicating no cytotoxicity. These findings suggest a promising bionano material that is suitable for orthodontic and orthopedic devices and warrants further research.
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Lopez-Ayuso C. A. et al. Biological and mechanical properties of a self-curing acrylic resin enriched with AgNPs as a proposal for orthopedic aparatology // Nanoscale Advances. 2025. Vol. 7. No. 7. pp. 2068-2082.
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Lopez-Ayuso C. A., Garcia-Contreras R., Manisekaran R., Figueroa M., Rangel Grimaldo M., Jacome M., Domínguez Pérez R. A., Lopez-Morales S., Cristians S., Acosta-Torres L. Biological and mechanical properties of a self-curing acrylic resin enriched with AgNPs as a proposal for orthopedic aparatology // Nanoscale Advances. 2025. Vol. 7. No. 7. pp. 2068-2082.
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TY - JOUR
DO - 10.1039/d4na00846d
UR - https://xlink.rsc.org/?DOI=D4NA00846D
TI - Biological and mechanical properties of a self-curing acrylic resin enriched with AgNPs as a proposal for orthopedic aparatology
T2 - Nanoscale Advances
AU - Lopez-Ayuso, Christian Andrea
AU - Garcia-Contreras, Rene
AU - Manisekaran, Ravichandran
AU - Figueroa, Mario
AU - Rangel Grimaldo, Manuel
AU - Jacome, Mariano
AU - Domínguez Pérez, Rubén Abraham
AU - Lopez-Morales, Salvador
AU - Cristians, Sol
AU - Acosta-Torres, L.S.
PY - 2025
DA - 2025/02/04
PB - Royal Society of Chemistry (RSC)
SP - 2068-2082
IS - 7
VL - 7
SN - 2516-0230
ER -
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@article{2025_Lopez-Ayuso,
author = {Christian Andrea Lopez-Ayuso and Rene Garcia-Contreras and Ravichandran Manisekaran and Mario Figueroa and Manuel Rangel Grimaldo and Mariano Jacome and Rubén Abraham Domínguez Pérez and Salvador Lopez-Morales and Sol Cristians and L.S. Acosta-Torres},
title = {Biological and mechanical properties of a self-curing acrylic resin enriched with AgNPs as a proposal for orthopedic aparatology},
journal = {Nanoscale Advances},
year = {2025},
volume = {7},
publisher = {Royal Society of Chemistry (RSC)},
month = {feb},
url = {https://xlink.rsc.org/?DOI=D4NA00846D},
number = {7},
pages = {2068--2082},
doi = {10.1039/d4na00846d}
}
Cite this
MLA
Copy
Lopez-Ayuso, Christian Andrea, et al. “Biological and mechanical properties of a self-curing acrylic resin enriched with AgNPs as a proposal for orthopedic aparatology.” Nanoscale Advances, vol. 7, no. 7, Feb. 2025, pp. 2068-2082. https://xlink.rsc.org/?DOI=D4NA00846D.