N-Acetyl Cysteine-Mediated Improvements in Dental Restorative Material Biocompatibility

被引:11
作者
Matsuura, Takanori [1 ]
Komatsu, Keiji [1 ]
Ogawa, Takahiro [1 ]
机构
[1] UCLA, Weintraub Ctr Reconstruct Biotechnol, Div Regenerat & Reconstruct Sci, Sch Dent, Los Angeles, CA 90095 USA
关键词
fibroblast; composite; PMMA; reactive oxygen spices (ROS); glutathione; IN-VITRO CYTOTOXICITY; MINERALIZED TISSUE; DENTURE BASE; METHYL-METHACRYLATE; WATER TEMPERATURE; PULP CELLS; BONE; ACETYLCYSTEINE; TITANIUM; MECHANISMS;
D O I
10.3390/ijms232415869
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
The fibroblast-rich gingival tissue is usually in contact with or adjacent to cytotoxic polymer-based dental restoration materials. The objective of this study was to determine whether the antioxidant amino acid, N-acetyl cysteine (NAC), reduces the toxicity of dental restorative materials. Human oral fibroblasts were cultured with bis-acrylic, flowable composite, bulk-fill composite, self-curing acrylic, and titanium alloy test specimens. Cellular behavior and function were analyzed on and around the materials. Impregnation of the bulk-fill composite and self-curing acrylic with NAC reduced their toxicity, improving the attachment, growth, and function of human oral fibroblasts on and around the materials. These mitigating effects were NAC dose dependent. However, NAC impregnation of the bis-acrylic and flowable composite was ineffective, with no cells attaching to nor around the materials. Although supplementing the culture medium with NAC also effectively improved fibroblast behaviors, direct impregnation of materials with NAC was more effective than supplementing the cultures. NAC-mediated improvements in fibroblast behavior were associated with reduced production of reactive oxygen species and oxidized glutathione together with increased glutathione reserves, indicating that NAC effectively directly scavenged ROS from materials and reinforced the cellular antioxidant defense system. These results establish a proof of concept of NAC-mediated improvements in biocompatibility in the selected dental restorative materials.
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页数:15
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