首页> 外文期刊>Biomedicine & pharmacotherapy =: Biomedecine & pharmacotherapie >Oleanolic acid inhibits RANKL-induced osteoclastogenesis via ER alpha/miR-503/RANK signaling pathway in RAW264.7 cells
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Oleanolic acid inhibits RANKL-induced osteoclastogenesis via ER alpha/miR-503/RANK signaling pathway in RAW264.7 cells

机译:OleAlic酸通过Raw264.7细胞中的ERα/ miR-503 /秩信导途径抑制RANKL诱导的骨核链菌细胞

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摘要

Oleanolic acid (OA) has recently become a research hotspot in the treatment of many human diseases, especially osteoporosis and arthritis. However, the mechanisms are not elucidated completely. We aimed to elucidate the target and the mechanism via which OA inhibited osteoclast differentiation. We used TRAP staining and toluidine blue dye to test OA effect on osteoclastogenesis and bone resorption respectively. We detected the expression level of osteoclast differentiation related genes, estrogen receptor alpha (ER alpha) and miR-503. We blocked ER alpha with its specific blocker, methylpiperidino pyrazole (MPP). We antagonized the function of miR-503 with antagomir-503-5p. RT-PCR and ELISA kits were used to investigate the effects of OA on miR-503 formation and maturation-relevant enzymes Dicer and Drosha at gene and protein levels. The data suggested that OA inhibited osteoclastogenesis and bone resorption. OA upregulated ER alpha and miR-503 expression levels, inhibited RANK expression. MPP significantly attenuated the OA effect including inhibiting osteoclastogenesis, inhibiting bone resorption and up-regulating miR-503 expression. It showed that ER alpha was the target of OA and OA up-regulated miR-503 expression through ER alpha. Antagomir-503-5p inhibited the function of miR-503 and attenuated the inhibition of OA on osteoclastogenesis, suggesting that OA inhibited osteoclast by up-regulating miR-503 expression. In addition, OA up-regulated miR-503 by up-regulating Dicer expression. In conclusion, OA inhibits RANKL-induced osteoclastogenesis via ER alpha/miR-503/ RANK signaling pathway in RAW264.7 cells.
机译:OleAlic acid(OA)最近成为治疗许多人类疾病,特别是骨质疏松症和关节炎的研究热点。然而,不完全阐明机制。我们的目标是阐明靶和OA抑制骨壳分化的机制。我们使用捕获染色和甲苯胺蓝染料,以分别测试OA对骨髓细胞发生和骨吸收的影响。我们检测到骨壳分化相关基因,雌激素受体α(ERα)和miR-503的表达水平。通过其特异性阻断剂,甲基哌啶吡唑(MPP)阻止了ERα。我们将miR-503与intagomir-503-5p的功能拮抗。 RT-PCR和ELISA试剂盒用于研究OA对MIR-503形成和成熟相关酶DICER和DROSHA在基因和蛋白质水平的影响。数据表明,OA抑制了骨髓发生和骨吸收。 OA上调ERα和miR-503表达水平,抑制等级表达。 MPP显着衰减了OA效应,包括抑制骨髓细胞发生,抑制骨吸收和上调miR-503表达。它表明,ER alpha是OA和OA上调MiR-503通过ERα表达的目标。抗噬杆-503-5P抑制miR-503的功能,并减弱了OA对骨质细胞发生的抑制作用,表明OA通过升压miR-503表达抑制了骨壳。此外,OA上调MIR-503通过上调DICER表达。总之,OA通过Raw264.7细胞中的ERα/ miR-503 /秩信导途径抑制RANKL诱导的骨酸核。

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