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首页> 外文期刊>Journal of bone and mineral metabolism >Hypoxia enhances glucocorticoid-induced apoptosis and cell cycle arrest via the PI3K/Akt signaling pathway in osteoblastic cells
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Hypoxia enhances glucocorticoid-induced apoptosis and cell cycle arrest via the PI3K/Akt signaling pathway in osteoblastic cells

机译:缺氧通过在骨细胞中通过PI3K / AKT信号通路增强糖皮质激素诱导的细胞凋亡和细胞周期停滞

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摘要

Although osteonecrosis of the femoral head is a known primary limitation of long-term or high-dose clinical administration of glucocorticoids, the mechanisms underlying this side effect remain unclear. Hypoxia is an important biological state under numerous pathological conditions. In this study, we investigated glucocorticoid-induced osteonecrosis under hypoxic conditions in the MC3T3-E1 osteoblast cell line using a cell cytotoxicity assay, flow cytometry, and western blotting. 6 alpha-Methylprednisolone sodium succinate (MPSL) more effectively induced apoptosis and G0/G1 arrest of MC3T3-E1 osteoblasts under hypoxic conditions than under normoxic conditions. Correspondingly, MPSL more effectively upregulated cellular levels of cleaved caspase 3, p53, and its target p21, and downregulated cyclin D1 levels in hypoxia. Moreover, overexpression of Akt abrogated the MPSL activation of p53, p21, and cleaved caspase 3 and the attenuation of cyclin D1 expression and rescued osteoblasts from MPSL-induced cell cycle arrest and apoptosis, indicating that phosphatidylinositol 3-kinase (PI3K)/Akt signaling might play an essential role in MPSL-induced inhibition of osteoblasts. Furthermore, the suppression of PI3K/Akt signaling and upregualtion of cellular p85 alpha monomer levels by MPSL were more pronounced under hypoxic conditions than under normoxic conditions. Finally, we found that the enhancement of the effects of MPSL under hypoxic conditions was attributed to hypoxia-upregulated glucocorticoid receptor activity. In conclusion, our results demonstrate that MPSL, a synthetic glucocorticoid receptor agonist, promotes the level of p85 alpha and inhibits PI3K/Akt signaling to induce apoptosis and cell cycle arrest in osteoblasts, and that this effect is enhanced under hypoxic conditions.
机译:虽然股骨头的骨折是一种已知的长期或高剂量临床施用糖皮质激素的初步限制,但该副作用的机制仍然不清楚。缺氧是许多病理条件下的重要生物状态。在这项研究中,我们使用细胞细胞毒性测定法,流式细胞术和Western印迹,研究了在MC3T3-E1成骨细胞系中缺氧条件下的糖皮质激素诱导的骨折坏死。 6α-甲基丙酮酸钠琥珀酸钠(MPS1)在缺氧条件下比在常氧条件下更有效地诱导MC3T3-E1成骨细胞的细胞凋亡和G0 / G1停滞。相应地,MPS1更有效地上调了切割的胱天蛋白酶3,P53及其靶P21的细胞水平,并且缺氧中的下调细胞周期蛋白D1水平。此外,AKT的过表达废除了P53,P21和切割的Caspase 3的MPSL活化和细胞周期蛋白D1表达的衰减,并从MPSL诱导的细胞周期停滞和凋亡中振荡成骨细胞,表明磷脂酰肌醇3-激酶(PI3K)/ AKT信号传导可能在MPSL诱导的成骨细胞抑制中发挥重要作用。此外,通过MPS1抑制PI3K / AKT信号传导和Upregualtion在缺氧条件下比在常氧条件下更明显。最后,我们发现,缺氧条件下MPS1的影响归因于缺氧上调的糖皮质激素受体活性。总之,我们的结果表明,MPS1是合成糖皮质激素受体激动剂,促进P85α的水平,并抑制PI3K / AKT信号传导,以诱导成骨细胞中的细胞凋亡和细胞周期停滞,并且在缺氧条件下提高了这种效果。

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