[No authors listed]
Numerous studies have demonstrated that various microRNAs (miRs) are aberrantly expressed in thyroid cancer and play critical roles in thyroid cancer malignancy. The aberrant expression of miRâ592 has frequently been reported in multiple human cancer types; however, its expression profile and functions in thyroid cancer remain poorly understood. Reverse transcriptionâquantitative polymerase chain reaction was carried out to determine the expression profile of miRâ592 in thyroid cancer tissues and cell lines. The regulatory effects of miRâ592 upregulation on thyroid cancer cell proliferation, migration, and invasion in vitro, and tumor growth in vivo were investigated using a CCKâ8 assay, migration and invasion assays, and a xenograft tumor model, respectively. Furthermore, the mechanisms underlying miRâ592âmediated suppression of the aggressive phenotypes of thyroid cancer cells were explored in detail. The results indicated that miRâ592 was significantly downregulated in thyroid cancer samples, and its downregulation was associated with lymph node metastasis and tumorânodeâmetastasis stage. Patients with thyroid cancer and low miRâ592 expression exhibited shorter overall survival than patients with high miRâ592 expression. Overexpression of miRâ592 resulted in decreased cell proliferation, migration, and invasion in thyroid cancer. In addition, neuroâoncological ventral antigen 1 (NOVA1) was identified as a novel target gene of miRâ592 in thyroid cancer cells. Furthermore, ectopic NOVA1 expression may effectively abolish the tumorâsuppressing effects of miRâ592 overexpression in thyroid cancer cells. Notably, the lncRNA NEAT1 was proposed to function as a sponge of miRâ592 in thyroid cancer cells, thereby regulating NOVA1 expression. Finally, resuming miRâ592 expression significantly impaired thyroid cancer tumor growth in vivo. The results indicated that the NEAT1/miRâ592/NOVA1 pathway may play regulatory roles in thyroid cancer malignancy in vitro and in vivo. Our findings may provide novel insight into the pathogenesis of thyroid cancer. Therefore, this pathway may be an effective target for treating patients with this disease.
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