首页> 美国卫生研究院文献>International Journal of Clinical and Experimental Pathology >Curcumin improves bone microarchitecture in glucocorticoid-induced secondary osteoporosis mice through the activation of microRNA-365 via regulating MMP-9
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Curcumin improves bone microarchitecture in glucocorticoid-induced secondary osteoporosis mice through the activation of microRNA-365 via regulating MMP-9

机译:姜黄素通过调节MMP-9激活microRNA-365从而改善了糖皮质激素诱发的继发性骨质疏松症小鼠的骨微结构

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摘要

The present study aimed to investigate bone microarchitecture of the proximal tibia in glucocorticoid-induced osteoporosis (GIOP) mice, and the underlying molecular mechanisms of curcumin in DXM-induced osteoporosis were performed. DXM-treated facilitated to induce hypercalciuria in mice, and curcumin-treated showed a decrease in urine calcium. Curcumin reversed DXM-induced bone resorption, including an increase in serum OCN and a decrease in bone resorption markers CTX and TRAP-5b. H&E staining showed the increased disconnections and separation in trabecular bone network as well as the reduction of trabecular thickness throughout the proximal metaphysis of tibia in GIOP group. Importantly, curcumin reversed DXM-induced trabecular deleterious effects and stimulated bone remodeling. The further evidence showed that curcumin supplement significantly decreased the TRAP-positive stained area and inhibited the activity of OPG/RANKL/RANK signaling in the GIOP mice. Moreover, bioinformatics analysis suggested that miR-365 was a regulator of MMP9. The levels of miR-365 were markedly suppressed; however, curcumin treatment could reverse the downregulation of miR-365 in the tibia of GIOP mice. Simultaneously, the results demonstrated that the mRNA and protein expression of MMP-9 were significantly increased in GIOP mice compared with that of the control group. Curcumin treatment could suppress the expression of MMP-9 in the tibia of GIOP mice. The present study demonstrated the protective effects of curcumin against bone deteriorations in the experimentally DIOP mice, and the underlying mechanism was mediated, at least partially, through the activation of microRNA-365 via suppressing MMP9.
机译:本研究旨在研究糖皮质激素诱导的骨质疏松症(GIOP)小鼠胫骨近端的骨微结构,并研究了姜黄素在DXM诱导的骨质疏松症中的潜在分子机制。 DXM处理可促进小鼠高钙尿症,姜黄素处理可降低尿钙。姜黄素逆转了DXM诱导的骨吸收,包括血清OCN的增加和骨吸收标记物CTX和TRAP-5b的减少。 H&E染色显示,GIOP组胫骨近端干physi端的小梁骨网络断开和分离增加,小梁厚度减小。重要的是,姜黄素逆转了DXM引起的小梁的有害作用,并刺激了骨骼的重塑。进一步的证据表明姜黄素补充剂可显着降低GIOP小鼠的TRAP阳性染色区域并抑制OPG / RANKL / RANK信号传导的活性。此外,生物信息学分析表明miR-365是MMP9的调节剂。 miR-365的水平被显着抑制;然而,姜黄素治疗可以逆转GIOP小鼠胫骨中miR-365的下调。同时,结果表明,与对照组相比,GIOP小鼠中MMP-9的mRNA和蛋白表达显着增加。姜黄素处理可抑制GIOP小鼠胫骨中MMP-9的表达。本研究表明姜黄素对实验性DIOP小鼠的骨质退化具有保护作用,其潜在机制至少部分是通过抑制MMP9激活microRNA-365介导的。

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