Expression dynamics of microRNA-223/Ras-associated binding protein 12 axis in Stage III/Grade B periodontal disease: A case–control analysis

Author:

Bandi Dhathri Priya1,Sudhakar Uma1,Parthasarathy Harinath2,Rajamani Snophia Rani3,Krishnaswamy Balasubramanian4

Affiliation:

1. Department of Periodontology, Thaimoogambigai Dental College and Hospital, M.G.R. Educational and Research Institute, Kattankulathur, Chennai, Tamil Nadu, India

2. Department of Periodontology, S.R.M. Dental College and Hospital, Kattankulathur, Chennai, Tamil Nadu, India

3. Department of Periodontology, Thaimoogambigai Dental College and Hospital, Kattankulathur, Chennai, Tamil Nadu, India

4. Former Assistant Professor, Department of Periodontology, SRM Dental College and Hospital, Kattankulathur, Chennai, Tamil Nadu, India

Abstract

Abstract: Background: The intricate interplay between periodontal polymicrobial flora and an altered immune response is the central cause of periodontal disease. Multiple cell death methods and their interactions, along with the associated signaling pathways, significantly impact the initiation and advancement of periodontitis. Our speculation revolves around the role of the miR-223/Ras-associated binding protein (RAB12) signaling axis in regulating autophagy-induced pyroptosis, contributing to the pathophysiology of periodontitis. Thus, this study aimed to investigate miR-223 and RAB12 expression patterns in Stage III/Grade B periodontal disease. Materials and Methods: The study included 50 healthy individuals and 50 patients diagnosed with Stage III/Grade B periodontal disease. Clinical parameters were cataloged for each participant. miRNA-223 underwent an in silico analysis to identify its potential target genes. Gingival crevicular fluid (GCF) samples were collected from the subjects for real-time polymerase chain reaction to evaluate the expression of both miR-223 and the RAB12 gene. Results: The miRTargetLink2.0 analysis highlighted the RAB12 gene as a prime target for miR-223. In periodontal disease patients, miR-223 and RAB12 gene expressions significantly increased (15.21 and 34.70-fold changes, respectively; P < 0.05). Receiver operating characteristic analysis suggested that miR-223 is a potential biomarker for periodontal disease, with 76% diagnostic accuracy and an area under the curve of 0.777 (P < 0.01). Conclusion: MicroRNA-223 and its target gene RAB12 exhibit high expression levels in GCF samples from individuals with periodontal disease. This suggests modulation of autophagy and the signaling mechanism for pyroptotic cell death in periodontal tissues during pathogenesis. Consequently, the miR-223/RAB12 axis might represent a plausible link for periodontal disease.

Publisher

Medknow

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