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AMPK 的激活通过自噬诱导和 NADPH 维持来保护成骨细胞免受过氧化氢诱导的凋亡:对骨坏死治疗的新启示?

Activation of AMPK protects against hydrogen peroxide-induced osteoblast apoptosis through autophagy induction and NADPH maintenance: new implications for osteonecrosis treatment?

机构信息

Department of Orthopedics, The Second Affiliated Hospital of Soochow University, Suzhou, Jiangsu 215000, China.

出版信息

Cell Signal. 2014 Jan;26(1):1-8. doi: 10.1016/j.cellsig.2013.08.046. Epub 2013 Sep 28.

Abstract

Elevated hydrogen peroxide (H2O2) causes osteoblast dysfunction and apoptosis, serving as an important contributor to the development of osteonecrosis. Here we aimed to understand the role of AMP-activated protein kinase (AMPK) in the process. We observed a high level of AMPK activation in surgery isolated patients' osteonecrosis tissues. In cultured osteoblastoma MG63 cells, H2O2 stimulation induced significant AMPK activation, oxidative stress, cell death and apoptosis. Inhibition of AMPK by its inhibitor (compound C) or by shRNA-mediated knockdown dramatically enhanced H2O2-induced MG63 cell apoptosis, while over-expression of AMPK in HEK-293 cells alleviated H2O2-induced cell damage. These results confirmed that H2O2-activated AMPK is pro-cell survival. We observed that H2O2 induced protective autophagy in MG63 cells, and AMPK-dependent Ulk1 activation and mTORC1 (mTOR complex 1) inactivation might involve autophagy activation. Further, AMPK activation inhibited H2O2-induced oxidative stress, probably through inhibiting NADPH (nicotinamide adenine dinucleotide phosphate) depletion, since more NADPH depletion and oxidative stress were induced by H2O2 in AMPK deficient MG63 cells. Finally, we observed a significant AMPK activation in H2O2-treated primary cultured and transformed (MC3T3-E1) osteoblasts, and AMPK inhibitor compound C enhanced death by H2O2 in these cells. Based on these results, we concluded that H2O2-induced AMPK activation is pro-survival and anti-apoptosis in osteoblasts. Autophagy induction and NADPH maintenance are involved in AMPK-mediated pro-survival effects. AMPK might represent a novel molecular target for osteonecrosis treatment.

摘要

过氧化氢 (H2O2) 水平升高会导致成骨细胞功能障碍和凋亡,是导致骨坏死发展的重要因素。在此,我们旨在研究 AMP 激活的蛋白激酶 (AMPK) 在这一过程中的作用。我们观察到手术分离的骨坏死组织中 AMPK 高度激活。在培养的成骨细胞瘤 MG63 细胞中,H2O2 刺激诱导显著的 AMPK 激活、氧化应激、细胞死亡和凋亡。用其抑制剂 (化合物 C) 或 shRNA 介导的 AMPK 敲低抑制 AMPK,可显著增强 H2O2 诱导的 MG63 细胞凋亡,而过表达 AMPK 则减轻 H2O2 诱导的细胞损伤。这些结果证实,H2O2 激活的 AMPK 具有促进细胞存活的作用。我们观察到 H2O2 诱导 MG63 细胞保护性自噬,而 AMPK 依赖性 Ulk1 激活和 mTORC1(mTOR 复合物 1)失活可能涉及自噬的激活。此外,AMPK 激活抑制 H2O2 诱导的氧化应激,可能是通过抑制 NADPH(烟酰胺腺嘌呤二核苷酸磷酸)耗竭,因为 AMPK 缺陷的 MG63 细胞中,H2O2 诱导更多的 NADPH 耗竭和氧化应激。最后,我们观察到 H2O2 处理的原代培养和转化(MC3T3-E1)成骨细胞中 AMPK 明显激活,而 AMPK 抑制剂化合物 C 增强了这些细胞中 H2O2 诱导的死亡。基于这些结果,我们得出结论,H2O2 诱导的 AMPK 激活可促进成骨细胞存活和抗凋亡。自噬诱导和 NADPH 维持参与 AMPK 介导的促生存作用。AMPK 可能成为骨坏死治疗的新的分子靶点。

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