Qi Zhang, Zezhao Ji, Abai Jiashaer, Youda Wang, Abuduxukuer Abulimiti
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引用次数: 0
摘要
目的:探讨fe -1对甲基乙二醛诱导的小鼠肺泡巨噬细胞铁凋亡的抑制作用。方法:分别用90 μmol/mL甲基乙二醛、10 μmol/mL fe - 1mg + fe -1或两者处理小鼠肺泡巨噬细胞MH-S细胞,检测细胞内活性氧(ROS)、丙二醛(MDA)和铁离子(Fe2+)水平及线粒体膜电位的变化。Western blotting检测谷胱甘肽过氧化物酶4 (GPX4)和长链酰基辅酶a合成酶4 (ACSL4)蛋白表达水平。结果:甲基乙二醛处理MH-S细胞24 h后,GPX4蛋白表达水平显著降低,ACSL4蛋白表达上调,胞内铁离子、ROS、MDA浓度升高,线粒体膜电位丧失,细胞活力下降。通过增加GPX4表达、降低ACSL4表达和胞内铁离子、ROS和MDA水平,以及恢复线粒体膜电位,fe -1处理的细胞有效地减弱了甲基乙二醛在MH-S细胞中的这些有害影响。结论:甲基乙二醛诱导MH-S细胞铁下垂呈剂量依赖性,fe -1对甲基乙二醛诱导的MH-S细胞铁下垂具有拯救作用。
[FER-1 inhibits methylglyoxal-induced ferroptosis in mouse alveolar macrophages in vitro].
Objectives: To investigate the inhibitory effect of FER-1 on methylglyoxal-induced ferroptosis in cultured mouse alveolar macrophages.
Methods: MH-S cells derived from mouse alveolar macrophages treated with 90 μg/mL methylglyoxal, 10 μmol/mL FER-1MG+FER-1, or both were examined for intracellular reactive oxygen species (ROS), malondialdehyde (MDA) and ferrous ion (Fe2+) levels and changes in mitochondrial membrane potential. Western blotting was performed to detect the protein expression levels of glutathione peroxidase 4 (GPX4) and long-chain acyl-CoA synthase 4 (ACSL4).
Results: Methylglyoxal treatment of MH-S cells for 24 h significantly decreased the protein expression level of GPX4, upregulated the protein expression of ACSL4, increased intracellular concentrations of ferrous ions, ROS and MDA, caused loss of mitochondrial membrane potential, and decreased cell viability. Treatment of the cells with FER-1 effectively attenuated these detrimental effects of methylglyoxal in MH-S cells by increasing GPX4 expression, reducing ACSL4 expression and intracellular ferrous ions, ROS and MDA levels, and restoring the mitochondrial membrane potential.
Conclusions: Methylglyoxal can induce ferroptosis in MH-S cells in a dose-dependent manner, and FER-1 can rescue the cells from methylglyoxal-induced ferroptosis.