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Application of Photosensitive Dental Materials As a Novel Antimicrobial Option in Dentistry: A Literature Review

Overview
Journal J Dent Sci
Specialty Dentistry
Date 2024 Apr 15
PMID 38618073
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Abstract

The formation of dental plaque is well-known for its role in causing various oral infections, such as tooth decay, inflammation of the dental pulp, gum disease, and infections of the oral mucosa like peri-implantitis and denture stomatitis. These infections primarily affect the local area of the mouth, but if not treated, they can potentially lead to life-threatening conditions. Traditional methods of mechanical and chemical antimicrobial treatment have limitations in fully eliminating microorganisms and preventing the formation of biofilms. Additionally, these methods can contribute to the development of drug-resistant microorganisms and disrupt the natural balance of oral bacteria. Antimicrobial photodynamic therapy (aPDT) is a technique that utilizes low-power lasers with specific wavelengths in combination with a photosensitizing agent called photosensitizer to kill microorganisms. By inducing damage through reactive oxygen species (ROS), aPDT offers a new approach to addressing dental plaque and associated microbial biofilms, aiming to improve oral health outcomes. Recently, photosensitizers have been incorporated into dental materials to create photosensitive dental materials. This article aimed to review the use of photosensitive dental materials for aPDT as an innovative antimicrobial option in dentistry, with the goal of enhancing oral health.

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References
1.
Catauro M, Papale F, Bollino F, Piccolella S, Marciano S, Nocera P . Silica/quercetin sol-gel hybrids as antioxidant dental implant materials. Sci Technol Adv Mater. 2016; 16(3):035001. PMC: 5099839. DOI: 10.1088/1468-6996/16/3/035001. View

2.
Alkhudhairy F, AlKheraif A, Naseem M, Khan R, Vohra F . Degree of conversion and depth of cure of Ivocerin containing photo-polymerized resin luting cement in comparison to conventional luting agents. Pak J Med Sci. 2018; 34(2):253-259. PMC: 5954360. DOI: 10.12669/pjms.342.14491. View

3.
Hashemikamangar S, Alsaedi R, Chiniforush N, Motevaselian F . Effect of antimicrobial photodynamic therapy with different photosensitizers and adhesion protocol on the bond strength of resin composite to sound dentin. Clin Oral Investig. 2022; 26(5):4011-4019. DOI: 10.1007/s00784-022-04370-8. View

4.
Pourhajibagher M, Omrani L, Noroozian M, Ghorbanzadeh Z, Bahador A . In vitro antibacterial activity and durability of a nano-curcumin-containing pulp capping agent combined with antimicrobial photodynamic therapy. Photodiagnosis Photodyn Ther. 2020; 33:102150. DOI: 10.1016/j.pdpdt.2020.102150. View

5.
Turajane K, Ji G, Chinenov Y, Chao M, Ayturk U, Suhardi V . RNA-seq Analysis of Peri-Implant Tissue Shows Differences in Immune, Notch, Wnt, and Angiogenesis Pathways in Aged Versus Young Mice. JBMR Plus. 2021; 5(11):e10535. PMC: 8567488. DOI: 10.1002/jbm4.10535. View