首页> 外文期刊>International journal of rheumatic diseases >Protective effects of 2,3,5,4‐tetrahydroxystilbene‐2‐o‐β‐D‐glucoside against osteoporosis: Current knowledge and proposed mechanisms
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Protective effects of 2,3,5,4‐tetrahydroxystilbene‐2‐o‐β‐D‐glucoside against osteoporosis: Current knowledge and proposed mechanisms

机译:2,3,5,4-四羟基苯乙烯-2-o-β-D-葡萄糖苷对骨质疏松症的保护作用:当前知识和提出的机制

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Abstract Aim The aim of this study was to explore the mechanism underlying the protective effects of 2,3,5,4‐tetrahydroxystilbene‐2‐o‐β‐D‐glucoside (TSG) against osteoporosis. Method MC3T3‐E1 mouse osteoblast precursor cells were used to analyze the protective effects of TSG on osteoblast apoptosis and differential inhibition induced by oxidative stress to determine the gene expression of forkhead transcription factor FKHRL1 (FoxO3a), T cell factors (TCFs), and downstream genes. A mouse model was used to assess the protective effects of TSG on ovariectomy‐induced osteoporosis as well as on Cell Counting Kit‐8 (CCK) gene expression, including that of FoxO3a. The mechanism underlying the protective effects of TSG against osteoporosis was further explored using high‐throughput sequencing data. Results A CCK‐8 assay in MC3T3‐E1 cells and hematoxylin and eosin staining in mouse tissue indicated that cell viability and bone tissue development were inhibited by oxidative stress and ovariectomy and that TSG neutralized or attenuated this effect. The expression levels of FoxO3a, TCF, and downstream genes and the indices of oxidative stress were the same in MC3T3‐E1 cells and the bone tissues of the mouse model. Bioinformatics analysis indicated that the cardiac muscle contraction and chemokine signaling pathway were disturbed in MC3T3‐E1 cells treated with hydrogen peroxide. Gene ontology‐biological process analysis revealed the influence of TSG treatment. Conclusion Osteoporosis and cardiac diseases appear to share a common mechanism. In addition to Wnt/FoxO3a signaling, the immune system and the chemokine signaling pathway may contribute to the protective mechanism of TSG.
机译:摘要目的本研究的目的是探讨2,3,5,4-四羟基苯乙烯-2-β-D-葡萄糖苷(TSG)对骨质疏松症的保护作用的机制。方法MC3T3-E1小鼠Osteooblast前体细胞分析TSG对氧化应激诱导的骨细胞凋亡和差异抑制的保护作用,以确定FORKHEAD转录因子FKHRL1(FOXO3A),T细胞因子(TCF)和下游的基因表达基因。使用小鼠模型来评估TSG对卵巢切除术诱导的骨质疏松症以及细胞计数试剂盒-8(CCK)基因表达的保护作用,包括FOXO3A。使用高通量测序数据进一步探索TSG对​​骨质疏松症的保护作用的机制。结果MC3T3-E1细胞中的CCK-8测定和小鼠组织中的嗜胞蛋白染色和曙红染色表明,通过氧化应激和卵巢切除术,并且TSG中和或减弱这种效果,细胞活力和骨组织发育。在MC3T3-E1细胞和小鼠模型的骨组织中,FOXO3A,TCF和下游基因的表达水平和氧化应激索引相同。生物信息学分析表明,在用过氧化氢处理的MC3T3-E1细胞中干扰了心肌收缩和趋化因子信号通路。基因本体论 - 生物过程分析显示TSG治疗的影响。结论骨质疏松症和心脏病似乎分享了一种共同的机制。除了WNT / FOXO3A信号传导之外,免疫系统和趋化因子信号通路可能有助于TSG的保护机制。

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