miR-1301-3p suppresses tumor growth by downregulating PCNA in thyroid papillary cancer

增殖细胞核抗原 医学 甲状腺癌 下调和上调 甲状腺 流式细胞术 病理 甲状腺乳突癌 甲状腺癌 转移 癌症研究 细胞周期 细胞生长 癌症 内科学 生物 免疫组织化学 免疫学 基因 遗传学 生物化学
作者
Dehui Qiao,Xuemei He,Hui Yang,Yang Zhou,Xian Deng,Lian Cheng,Xiangyu Zhou
出处
期刊:American Journal of Otolaryngology [Elsevier BV]
卷期号:42 (2): 102920-102920 被引量:45
标识
DOI:10.1016/j.amjoto.2021.102920
摘要

Thyroid carcinoma is the most common endocrine tumor, and thyroid papillary carcinoma is the most common form. Although thyroid papillary carcinoma presents a good prognosis, some patients still exhibit recurrence or distant metastasis. miR-1301-3p has been found involved in the occurrence and development of some special tumors. Our study aims to investigate the miR-1301-3p expression in thyroid papillary carcinoma, to explore its biological function, and to provide a potential marker for diagnosis and treatment of thyroid papillary carcinoma. The tissue samples from 70 patients with PTC (n = 35) and benign tumors (n = 35) were collected respectively. miR-1301-3p expression were detected by qPCR. Diagnostic value of miR-1301-3p was analyzed by ROC curve. CCK-8 assays and flow cytometry were performed to detect the effect of miR-1301-3p on TPC-1 function. PCNA expression of protein was detected by WB. Compared with the normal group, the expression of miR-1301-3p was obviously decreased in both benign group and PTC group. With the higher T and N grades, the lower expression of miR-1301-3p. ROC curve analysis showed that the diagnostic values of miR-1301-3p for benign tumor and PTC were 0.766 and 0.881, respectively. Vitro experiments showed that miR-1301-3p was decreased in TPC-1 cells, then, upregulated miR-1301-3p blocked the TPC-1 cell cycle in G1/S phase, and inhibited the proliferation. PCNA expression was significantly increased in TPC-1 cells and significantly decreased after upregulation of miR-1301-3p. The present study showed that the expression of miR-1301-3p in PTC was significantly decreased, which was related to T and N grade. Upregulation of miR-1301-3p could inhibit cell proliferation and cell migration. miR-1301-3p may serve as a potential biomarker for the early diagnosis and treatment of PTC.
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