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首页> 外文期刊>BMC Complementary and Alternative Medicine >Sesamin stimulates osteoblast differentiation through p38 and ERK1/2 MAPK signaling pathways
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Sesamin stimulates osteoblast differentiation through p38 and ERK1/2 MAPK signaling pathways

机译:芝麻素通过p38和ERK1 / 2 MAPK信号通路刺激成骨细胞分化

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Background Osteoporosis is a worldwide health problem predominantly affecting post-menopausal women. Therapies aimed at increasing bone mass in osteoporetic patients lag behind comparable investigation of therapeutic strategies focusing on the bone resorption process. Sesamin, a major lignan compound found in Sesamun indicum Linn., has a variety of pharmacological effects, though its activity on bone cell function is unclear. Herein we examine the effect of this lignan on osteoblast differentiation and function. Method Cell cytotoxicity and proliferative in hFOB1.19 were examined by MTT and alamar blue assay up to 96?h of treatment. Gene expression of COL1, ALP, BMP-2, Runx2, OC, RANKL and OPG were detected after 24?h of sesamin treatment. ALP activity was measured at day 7, 14 and 21 of cultured. For mineralized assay, ADSCs were cultured in the presence of osteogenic media supplement with or without sesamin for 21?days and then stained with Alizarin Red S. MAPK signaling pathway activation was observed by using western blotting. Results Sesamin promoted the gene expression of COL1, ALP, OCN, BMP-2 and Runx2 in hFOB1.19. On the other hand, sesamin was able to up-regulate OPG and down-regulate RANKL gene expression. ALP activity also significantly increased after sesamin treatment. Interestingly, sesamin induced formation of mineralized nodules in adipose derived stem cells (ADSCs) as observed by Alizarin Red S staining; this implies that sesamin has anabolic effects both on progenitor and committed cell stages of osteoblasts. Western blotting data showed that sesamin activated phosphorylation of p38 and ERK1/2 in hFOB1.19. Conclusions The data suggest that sesamin has the ability to trigger osteoblast differentiation by activation of the p38 and ERK MAPK signaling pathway and possibly indirectly regulate osteoclast development via the expression of OPG and RANKL in osteoblasts. Therefore, sesamin may be a promising phytochemical that could be developed for supplementation of osteoporotic therapy.
机译:背景骨质疏松症是一个全球性的健康问题,主要影响绝经后妇女。旨在增加骨质疏松症患者骨量的疗法落后于针对骨吸收过程的治疗策略的可比研究。芝麻素是一种在芝麻树中发现的主要木脂素化合物,尽管对骨细胞功能的活性尚不清楚,但它具有多种药理作用。本文中,我们研究了这种木脂素对成骨细胞分化和功能的影响。方法采用MTT法和阿拉玛蓝法检测96h后hFOB1.19细胞的细胞毒性和增殖情况。芝麻素处理24h后检测到COL1,ALP,BMP-2,Runx2,OC,RANKL和OPG的基因表达。在培养的第7、14和21天测量ALP活性。对于矿化分析,将ADSCs在有或没有芝麻素的成骨培养基中培养21天,然后用茜素红S染色。通过Western印迹观察MAPK信号通路的激活。结果芝麻素能促进hFOB1.19中COL1,ALP,OCN,BMP-2和Runx2的基因表达。另一方面,芝麻素能够上调OPG和下调RANKL基因表达。芝麻素处理后,ALP活性也显着增加。有趣的是,芝麻素诱导了脂肪衍生干细胞(ADSCs)中矿化结节的形成,如茜素红S染色所观察到的。这意味着芝麻素对成骨细胞的祖细胞和定殖细胞阶段均具有合成代谢作用。蛋白质印迹数据表明,芝麻素激活了hFOB1.19中p38和ERK1 / 2的磷酸化。结论数据表明,芝麻素具有通过激活p38和ERK MAPK信号通路来触发成骨细胞分化的能力,并可能通过OPG和RANKL在成骨细胞中的表达间接调节破骨细胞的发育。因此,芝麻素可能是一种有前途的植物化学物质,可以用于补充骨质疏松治疗。

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