首页> 外文期刊>International journal of molecular medicine >Lithium chloride attenuates the abnormal osteogenic/adipogenic differentiation of bone marrow-derived mesenchymal stem cells obtained from rats with steroid-related osteonecrosis by activating the β-catenin pathway
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Lithium chloride attenuates the abnormal osteogenic/adipogenic differentiation of bone marrow-derived mesenchymal stem cells obtained from rats with steroid-related osteonecrosis by activating the β-catenin pathway

机译:氯化锂通过激活β-catenin途径减轻类固醇相关性骨坏死大鼠骨髓间充质干细胞的异常成骨/成脂分化。

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Steroid-related osteonecrosis of the femoral head?(ONFH) may be a disease that results from the abnormal osteogenic/adipogenic differentiation of bone marrow-derived mesenchymal stem cells?(BMMSCs). In the present study, we examined the possible use of lithium in an aim to reverse the abnormal osteogenic/adipogenic differentiation of BMMSCs isolated from rats with steroid-related ONFH?(termed ONFH-BMMSCs). BMMSCs obtained from steroid?related ONFH rat femurs were cultured with or without lithium chloride?(LiCl). BMMSCs obtained from normal rat femurs were cultured as controls. LiCl significantly increased the expression of osteocalcin and Runx2 in the ONFH-BMMSCs during osteogenic induction. The mineralization of ONFH-BMMSCs following osteogenic induction was also enhanced. Furthermore, LiCl exerted anti-adipogenic effects on the ONFH-BMMSCs by inhibiting the expression of peroxisome proliferator-activated receptor?γ?(PPARγ) and fatty acid binding protein?4?(Fabp4) during adipogenic induction, and decreasing lipid droplet formation at the end of adipogenic induction. These effects of LiCl on the ONFH-BMMSCs were associated with an increased expression of β-catenin and a decreased expression of phosphorylated GSK-3β at Tyr-216, and these effects were abolished by treatment with quercetin, an antagonist of the β-catenin pathway. The normal osteogenic/adipogenic activity of BMMSCs may be impaired in steroid-related ONFH. However, as demonstrated by our findings, LiCl reduces abnormal adipogenic activity and simultaneously increases the osteogenic differentiation of ONFH-BMMSCs by activating the β-catenin pathway.
机译:股骨头的类固醇相关性骨坏死可能是由骨髓间充质干细胞(BMMSCs)的异常成骨/成脂分化所致。在本研究中,我们研究了锂的可能用途,目的是逆转从类固醇相关ONFH?(称为ONFH-BMMSC)大鼠中分离出的BMMSC的异常成骨/成脂分化。从类固醇相关的ONFH大鼠股骨中获得的BMMSCs在有或没有氯化锂(LiCl)的情况下培养。培养从正常大鼠股骨获得的BMMSC作为对照。 LiCl在成骨诱导过程中显着增加ONFH-BMMSC中骨钙素和Runx2的表达。成骨诱导后ONFH-BMMSCs的矿化也得到增强。此外,LiCl通过抑制成脂诱导过程中过氧化物酶体增殖物激活受体αγ(PPARγ)和脂肪酸结合蛋白α4β(Fabp4)的表达,并抑制脂质体的形成,从而对ONFH-BMMSCs具有抗脂肪形成作用。成脂诱导结束。 LiCl对ONFH-BMMSC的这些作用与Tyr-216处β-catenin的表达增加和磷酸化GSK-3β的表达减少有关,而这些作用通过用β-catenin的拮抗剂槲皮素治疗而消除。途径。在类固醇相关的ONFH中,BMMSC的正常成骨/成脂活性可能会受损。然而,正如我们的发现所表明的,LiCl通过激活β-catenin途径减少异常的脂肪形成活性,同时增加ONFH-BMMSC的成骨分化。

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