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Role of noncoding RNAs in orthodontic tooth movement: new insights into periodontium remodeling

Yuming Chen, Chao Zhang

2023Journal of Translational Medicine22 citationsDOIOpen Access PDF

Abstract

Orthodontic tooth movement (OTM) is biologically based on the spatiotemporal remodeling process in periodontium, the mechanisms of which remain obscure. Noncoding RNAs (ncRNAs), especially microRNAs and long noncoding RNAs, play a pivotal role in maintaining periodontal homeostasis at the transcriptional, post-transcriptional, and epigenetic levels. Under force stimuli, mechanosensitive ncRNAs with altered expression levels transduce mechanical load to modulate intracellular genes. These ncRNAs regulate the biomechanical responses of periodontium in the catabolic, anabolic, and coupling phases throughout OTM. To achieve this, down or upregulated ncRNAs actively participate in cell proliferation, differentiation, autophagy, inflammatory, immune, and neurovascular responses. This review highlights the regulatory mechanism of fine-tuning ncRNAs in periodontium remodeling during OTM, laying the foundation for safe, precise, and personalized orthodontic treatment.

Topics & Concepts

PeriodontiummicroRNAEpigeneticsNon-coding RNABone remodelingBiologyCell biologyLong non-coding RNAPeriodontal fiberNeuroscienceDownregulation and upregulationBioinformaticsMedicineGeneticsDentistryGeneCancer-related molecular mechanisms researchMicroRNA in disease regulationRNA modifications and cancer
Role of noncoding RNAs in orthodontic tooth movement: new insights into periodontium remodeling | Litcius