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1.
International Journal of Oral Science ; (4): 14-14, 2020.
Article in English | WPRIM | ID: wpr-828964

ABSTRACT

Activation of osteoclasts during orthodontic tooth treatment is a prerequisite for alveolar bone resorption and tooth movement. However, the key regulatory molecules involved in osteoclastogenesis during this process remain unclear. Long noncoding RNAs (lncRNAs) are a newly identified class of functional RNAs that regulate cellular processes, such as gene expression and translation regulation. Recently, lncRNAs have been reported to be involved in osteogenesis and bone formation. However, as the most abundant noncoding RNAs in vivo, the potential regulatory role of lncRNAs in osteoclast formation and bone resorption urgently needs to be clarified. We recently found that the lncRNA Nron (long noncoding RNA repressor of the nuclear factor of activated T cells) is highly expressed in osteoclast precursors. Nron is downregulated during osteoclastogenesis and bone ageing. To further determine whether Nron regulates osteoclast activity during orthodontic treatment, osteoclastic Nron transgenic (Nron cTG) and osteoclastic knockout (Nron CKO) mouse models were generated. When Nron was overexpressed, the orthodontic tooth movement rate was reduced. In addition, the number of osteoclasts decreased, and the activity of osteoclasts was inhibited. Mechanistically, Nron controlled the maturation of osteoclasts by regulating NFATc1 nuclear translocation. In contrast, by deleting Nron specifically in osteoclasts, tooth movement speed increased in Nron CKO mice. These results indicate that lncRNAs could be potential targets to regulate osteoclastogenesis and orthodontic tooth movement speed in the clinic in the future.


Subject(s)
Animals , Mice , Bone Resorption , Genetics , Mice, Inbred C57BL , Osteoclasts , Osteogenesis , RANK Ligand , RNA, Long Noncoding , Genetics
2.
Journal of International Oncology ; (12): 702-704, 2013.
Article in Chinese | WPRIM | ID: wpr-440545

ABSTRACT

Metabolomics is a new science and technology,which it refers to a holistic analytical approach to all the low molecular weight metabolites in an organism or a cell.Metabonomics is one of the important component of life sciences,after the genomics,transcriptomics and proteomics.The development of ovarian cancer is accompanied by metabolic changes.Metabolomics can provide a complete information for ovarian cancer metabolism,and can bring broad prospects for early diagnosis and individualized treatment of ovarian cancer.

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