N-acetylneuraminic acid promotes ferroptosis of H9C2 cardiomyocytes with hypoxia/reoxygenation injury by inhibiting the Nrf2 axis.

Chunfei Ji, Zongchao Zuo, Jun Wang, Miaonan Li
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Abstract

Objectives: To investigate the mechanism through which N-acetylneuraminic acid (Neu5Ac) exacerbates hypoxia/reoxygenation (H/R) injury in rat cardiomyocytes (H9C2 cells).

Methods: H9C2 cells were cultured in hypoxia and glucose deprivation for 8 h followed by reoxygenation for different durations to determine the optimal reoxygenation time. Under the optimal H/R protocol, the cells were treated with 0, 5, 10, 20, 30, 40, 50, and 60 mmol/L Neu5Ac during reoxygenation to explore the optimal drug concentration. The cells were then subjected to H/R injury followed by treatment with Neu5Ac, Fer-1 (a ferroptosis inhibitor), or both. The changes in SOD activity, intracellular Fe2+ and lipid ROS levels in the cells were evaluated, and the cellular expressions of Nrf2, GPX4, HO-1, FSP1, and xCT proteins were detected using Western blotting.

Results: Following hypoxia and glucose deprivation for 8 h, the cells with reoxygenation for 6 h, as compared with other time lengths of reoxygenation except for 9 h, showed the lowest expression levels of Nrf2, GPX4, HO-1, and FSP1 proteins (P<0.001). Neu5Ac treatment of dose-dependently decreased the viability of the cells with H/R injury with an IC50 of 30.07 mmol/L. Reoxygenation for 3 h with normal glucose supplementation and a Neu5Ac concentration of 30 mmol/L were selected as the optimal conditions in the subsequent experiments. The results showed that Neu5Ac could significantly increase SOD activity, Fe2+ and lipid ROS levels and reduce Nrf2, GPX4, HO-1, and FSP1 protein expressions in H9C2 cells with H/R injury, but its effects were significantly attenuated by treatment with Fer-1.

Conclusions: Neu5Ac exacerbates ferroptosis of myocardial cells with H/R injury by inhibiting the Nrf2 axis to promote the production of ROS and lipid ROS.

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n -乙酰神经氨酸通过抑制Nrf2轴促进缺氧/再氧损伤的H9C2心肌细胞铁下垂。
目的:探讨n -乙酰神经氨酸(Neu5Ac)加重大鼠心肌细胞(H9C2细胞)缺氧/再氧化(H/R)损伤的机制。方法:对H9C2细胞进行缺氧和葡萄糖剥夺培养8 h,然后进行不同时间的复氧,确定最佳复氧时间。在最佳H/R方案下,在复氧过程中分别用0、5、10、20、30、40、50、60 mmol/L的Neu5Ac处理细胞,探索最佳药物浓度。然后对细胞进行H/R损伤,然后用Neu5Ac、fe -1(一种铁下垂抑制剂)或两者同时处理。检测细胞内SOD活性、胞内Fe2+及脂质ROS水平的变化,Western blotting检测细胞内Nrf2、GPX4、HO-1、FSP1、xCT蛋白的表达。结果:缺氧葡萄糖剥夺8 h后,再氧化6 h的细胞Nrf2、GPX4、HO-1、FSP1蛋白表达水平与除9 h外的其他再氧化时间相比最低(P50为30.07 mmol/L)。后续实验以补充正常葡萄糖复氧3 h, Neu5Ac浓度为30 mmol/L为最佳条件。结果表明,Neu5Ac可显著提高H/R损伤H9C2细胞的SOD活性、Fe2+和脂质ROS水平,降低Nrf2、GPX4、HO-1和FSP1蛋白表达,但fe -1处理可显著减弱其作用。结论:Neu5Ac通过抑制Nrf2轴促进ROS和脂质ROS的产生,加重H/R损伤心肌细胞的铁下沉。
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来源期刊
南方医科大学学报杂志
南方医科大学学报杂志 Medicine-Medicine (all)
CiteScore
1.50
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0.00%
发文量
208
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