Evaluation of Oxidative Stress Biomarkers and Gene Expression Profiles in Saliva Following Orthodontic Application Force

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Abstract

Orthodontic treatment applies mechanical forces that induce oxidative stress and inflammatory response within the periodontal tissue, potentially affecting oral health. Non-invasive diagnostic method through saliva offering a promising medium for evaluating oxidative stress biomarkers and gene expression profiles. This cross-sectional study assessed salivary biomarkers and the expression of the IL-1β and IL-8 genes in patients with orthodontic appliances, as these factors are crucial in inflammation, bone resorption, and remodeling during orthodontic treatment. Thirty orthodontic patients with fixed metallic appliances (≥6 months) and thirty matched healthy controls, ages 18 to 35, participated in this cross-sectional study. Salivary biomarkers, such as total protein concentration and oxidative stress markers were measured using standard assays. The expression of target genes was determined through Quantitative Reverse Transcription-PCR and the results were presented as fold change values. Oxidative stress markers demonstrated significant differences between groups, with the case group exhibiting notably higher levels of 8-OHdG (p = 0.0067), MDA (p = 0.0031), TAC (p = 0.0074), and TBARS (p < 0.0001). Orthodontic patients also displayed significantly elevated mean fold changes in IL-1β (p < 0.0001; 4.4) and IL-8 (p < 0.0001; 5.45) gene expression relative to controls. Furthermore, positive correlations were reported between the target genes and oxidative stress indicators, particularly MDA and 8-OHdG.A significant increase in oxidative stress levels and changes in salivary Interleukin-1 beta and Interleukin-8 gene expression have been observed during orthodontic treatment.

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