Javascript must be enabled to continue!
Effect of Nystatin Coated Copper Oxide (CuO) Particles on Mechanical, Thermal, and Antifungal Properties of Polymethyl Methacrylate (PMMA)–Based Denture Materials
View through CrossRef
Polymethyl methacrylate (PMMA) has garnered significant attention in the field of dentistry due to its wide applications. This paper proposes the incorporation of the nystatin coated copper oxide (CuO) particles having desirable conductivity and antifungal properties, as a filler in the PMMA denture to address their low thermal conductivity, low impact strength, low fatigue resistance, and microbial adhesion. The prepared nystatin coated CuO particles were characterized with several analytical techniques. The nystatin coated CuO particles were mixed in different ratios (0%, 1%, 2%, and 4%) in PMMA corresponding to groups C, E1, E2, and E3, respectively. The prepared samples of composite PMMA with nystatin coated CuO were evaluated to determine their transverse strength, impact strength, Vickers hardness (HV), and thermal conductivity. Furthermore, antifungal properties of CuO particles, nystatin coated CuO particles, and their acrylic composites were evaluated against Candida albicans. Scanning electron microscopy (SEM) analysis confirmed the particles’ spherical and irregular shapes. The particle sizes range from nano to micron level. Fourier‐transform infrared spectroscopy (FTIR) and energy dispersive X‐ray spectroscopy (EDX) analysis confirmed the coating of nystatin on CuO. X‐ray diffraction (XRD) analysis showed the diffraction patterns and planes of CuO monoclinic shape structure. The composite prepared to have higher values of HV (19.53 ± 0.65, 20.16 ± 0.37, and 21.11 ± 0.75, respectively) as compared to the control. The impact strength values were measured high at 14.12 ± 5.55 kJ/m2 for 2% containing nystatin coated CuO acrylic resins compared to control and other groups. The conductivity increased linearly with the addition of CuO particles. The addition of CuO particles causes a reduction in flexural strength as compared to the control group. As the concentration of nystatin coated CuO (1%, 2%, and 4%) in acrylic samples increased, the antifungal properties were improved. Thus, the incorporation of optimized concentrations of nystatin coated CuO particles in acrylic resin resulted in the improved mechanical, thermal, and antifungal properties.
Title: Effect of Nystatin Coated Copper Oxide (CuO) Particles on Mechanical, Thermal, and Antifungal Properties of Polymethyl Methacrylate (PMMA)–Based Denture Materials
Description:
Polymethyl methacrylate (PMMA) has garnered significant attention in the field of dentistry due to its wide applications.
This paper proposes the incorporation of the nystatin coated copper oxide (CuO) particles having desirable conductivity and antifungal properties, as a filler in the PMMA denture to address their low thermal conductivity, low impact strength, low fatigue resistance, and microbial adhesion.
The prepared nystatin coated CuO particles were characterized with several analytical techniques.
The nystatin coated CuO particles were mixed in different ratios (0%, 1%, 2%, and 4%) in PMMA corresponding to groups C, E1, E2, and E3, respectively.
The prepared samples of composite PMMA with nystatin coated CuO were evaluated to determine their transverse strength, impact strength, Vickers hardness (HV), and thermal conductivity.
Furthermore, antifungal properties of CuO particles, nystatin coated CuO particles, and their acrylic composites were evaluated against Candida albicans.
Scanning electron microscopy (SEM) analysis confirmed the particles’ spherical and irregular shapes.
The particle sizes range from nano to micron level.
Fourier‐transform infrared spectroscopy (FTIR) and energy dispersive X‐ray spectroscopy (EDX) analysis confirmed the coating of nystatin on CuO.
X‐ray diffraction (XRD) analysis showed the diffraction patterns and planes of CuO monoclinic shape structure.
The composite prepared to have higher values of HV (19.
53 ± 0.
65, 20.
16 ± 0.
37, and 21.
11 ± 0.
75, respectively) as compared to the control.
The impact strength values were measured high at 14.
12 ± 5.
55 kJ/m2 for 2% containing nystatin coated CuO acrylic resins compared to control and other groups.
The conductivity increased linearly with the addition of CuO particles.
The addition of CuO particles causes a reduction in flexural strength as compared to the control group.
As the concentration of nystatin coated CuO (1%, 2%, and 4%) in acrylic samples increased, the antifungal properties were improved.
Thus, the incorporation of optimized concentrations of nystatin coated CuO particles in acrylic resin resulted in the improved mechanical, thermal, and antifungal properties.
Related Results
Tensile Bond Strength between Different Denture Base Materials and Soft Denture Liners
Tensile Bond Strength between Different Denture Base Materials and Soft Denture Liners
(1) Background: Various materials are available for CAD-CAM denture base fabrication, for both additive and subtractive manufacturing. However, little has been reported on bond str...
Mechanical and thermal properties of polylactic acid blended with recycled polymethyl methacrylate
Mechanical and thermal properties of polylactic acid blended with recycled polymethyl methacrylate
AbstractThis study investigates the effect of incorporating recycled polymethyl methacrylate (r‐PMMA) into polylactic acid (PLA) and further modifications with a bio‐based compatib...
Antifungal Effect of Silver Nano Particles Coating on Denture Base Specimens Made of Acrylic Resin
Antifungal Effect of Silver Nano Particles Coating on Denture Base Specimens Made of Acrylic Resin
OBJECTIVE: The present study was under taken to determine the anti-fungal effect of Silver Nano partial coating in concentrations of 0.1%, 0.2%, 0.5% and 1% on heat cure acrylic de...
Durability of Acrylic Products during Heat Aging
Durability of Acrylic Products during Heat Aging
Currently, the areas of application of polymethyl methacrylate plastic (acrylic) owing to its unique properties (most notably, lightness, plasticity, exceptional transparency and h...
Denture Stomatitis and Its Associations Among Older Adults in the United Arab Emirates
Denture Stomatitis and Its Associations Among Older Adults in the United Arab Emirates
ABSTRACT
Background
Denture stomatitis is a common oral mucosal lesion among older adults wearing removable prostheses. I...
Denture microbiome shift and changes of salivary inflammatory markers following insertion of 3D printed removable partial PMMA denture: a pilot study
Denture microbiome shift and changes of salivary inflammatory markers following insertion of 3D printed removable partial PMMA denture: a pilot study
Abstract
Background
The aim of this study was to investigate the microbiome shift of denture biofilm formation, the incidence of Candida and changes...
Poly(methyl methacrylate) and glycidyl-functionalized poly(methyl methacrylate) nano-size latex particles via differential microemulsion polymerization
Poly(methyl methacrylate) and glycidyl-functionalized poly(methyl methacrylate) nano-size latex particles via differential microemulsion polymerization
The differential microemulsion polymerization technique was used to synthesize nanoparticles of glycidyl-functionalized poly(methyl methacrylate), PMMA, via a two-step process, by ...
Antifungal effects of eugenol on Candida albicans adherence to denture polymers
Antifungal effects of eugenol on Candida albicans adherence to denture polymers
Background
The study’s objective is to assess the adherence of C. albicans in different types of denture polymers and the effectiveness of eugenol and commercialized...

