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Article

Peroxide-Free Bleaching Gel: Effect on the Surface and Mechanical Properties of Nano- and Micro-Hybrid Restorative Composite Materials

by
Aftab Ahmed Khan
1,*,
Abdulaziz Abdullah Alkhureif
1,
Leonel S. J. Bautista
2,
Hanan Alsunbul
3 and
Sajith Vellappally
1
1
Dental Health Department, College of Applied Medical Sciences, King Saud University, Riyadh 11451, Saudi Arabia
2
Dental and Oral Rehabilitation Department, College of Applied Medical Sciences, King Saud University, Riyadh 11451, Saudi Arabia
3
Restorative Dentistry Department, College of Dentistry, King Saud University, Riyadh 11451, Saudi Arabia
*
Author to whom correspondence should be addressed.
Appl. Sci. 2023, 13(10), 5935; https://doi.org/10.3390/app13105935
Submission received: 11 April 2023 / Revised: 8 May 2023 / Accepted: 9 May 2023 / Published: 11 May 2023
(This article belongs to the Special Issue Applied Sciences in Oral Health and Clinical Dentistry)

Abstract

This laboratory investigation was designed to test the influence of a novel bleaching formulation based on phthalimidoperoxycaproic acid (PAP) with additives on the surface and mechanical properties of nano- and micro-hybrid restorative composites. Twenty-four bar-shaped and twelve disk-shaped samples from each restorative composite were prepared. The samples from each restorative composite were randomly divided into two groups according to the treatment, i.e., experimental and control. The treated groups went through the bleaching process: by Opalescence Regular or novel PAP+-containing gel (HiSmile™). The treated group underwent a bleaching process for seven consecutive days (a 10-min session of bleaching application every day) before the properties were tested. A paired sample t-test was performed to compare the results between the experimental and the control groups. The level of significance was set at 0.05. The surface roughness of the nanohybrid composite using Opalescence Regular (p < 0.05) was significant. Additionally, a significant difference in nanohardness and elastic modulus between the experimental and the control groups of the microhybrid composite using Opalescence Regular was observed: p = 0.041 and p = 0.023, respectively. While a marked difference in flexural strength was observed in the experimental and control groups using Opalescence Regular, Hismile™ bleaching gel caused a diminutive and insignificant reduction in tested properties (p > 0.05). It was found that Opalescence Regular bleaching gel affects the surface and bulk properties of restorative composite materials, whereas the novel PAP+ formulation has no deleterious effect on either nano- or micro-hybrid restorative composites.
Keywords: bleaching gel; microhybrid composite; nanohybrid composite; mechanical properties; surface properties; phthalimidoperoxycaproic acid (PAP+); free radical bleaching gel; microhybrid composite; nanohybrid composite; mechanical properties; surface properties; phthalimidoperoxycaproic acid (PAP+); free radical

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MDPI and ACS Style

Khan, A.A.; Abdullah Alkhureif, A.; Bautista, L.S.J.; Alsunbul, H.; Vellappally, S. Peroxide-Free Bleaching Gel: Effect on the Surface and Mechanical Properties of Nano- and Micro-Hybrid Restorative Composite Materials. Appl. Sci. 2023, 13, 5935. https://doi.org/10.3390/app13105935

AMA Style

Khan AA, Abdullah Alkhureif A, Bautista LSJ, Alsunbul H, Vellappally S. Peroxide-Free Bleaching Gel: Effect on the Surface and Mechanical Properties of Nano- and Micro-Hybrid Restorative Composite Materials. Applied Sciences. 2023; 13(10):5935. https://doi.org/10.3390/app13105935

Chicago/Turabian Style

Khan, Aftab Ahmed, Abdulaziz Abdullah Alkhureif, Leonel S. J. Bautista, Hanan Alsunbul, and Sajith Vellappally. 2023. "Peroxide-Free Bleaching Gel: Effect on the Surface and Mechanical Properties of Nano- and Micro-Hybrid Restorative Composite Materials" Applied Sciences 13, no. 10: 5935. https://doi.org/10.3390/app13105935

APA Style

Khan, A. A., Abdullah Alkhureif, A., Bautista, L. S. J., Alsunbul, H., & Vellappally, S. (2023). Peroxide-Free Bleaching Gel: Effect on the Surface and Mechanical Properties of Nano- and Micro-Hybrid Restorative Composite Materials. Applied Sciences, 13(10), 5935. https://doi.org/10.3390/app13105935

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