磷酸戊糖途径
噪声性听力损失
一氧化氮
氧化应激
重编程
毛细胞
活性氧
糖酵解
细胞生物学
化学
听力损失
生物化学
生物
耳蜗
内分泌学
新陈代谢
细胞
医学
解剖
噪声暴露
听力学
作者
Haidi Yang,Yong Zhu,Yongyi Ye,Jiao Guan,Xin Min,Hao Xiong
标识
DOI:10.1016/j.freeradbiomed.2021.11.020
摘要
Nitric oxide (NO) is critically involved in the regulation of a wide variety of physiological and pathophysiological processes. However, the role of NO in the pathogenesis of noise-induced hearing loss (NIHL) is complex and remains controversial. Here we reported that treatment of CBA/J mice with l-arginine, a physiological precursor of NO, significantly reduced noise-induced reactive oxygen species accumulation in outer hair cells (OHCs), attenuated noise-induced loss of OHCs and NIHL consequently. Conversely, pharmacological inhibition of endothelial nitric oxide synthase exacerbated noise-induced loss of OHCs and aggravated NIHL. In HEI-OC1 cells, NO also showed substantial protection against H2O2-induced oxidative stress and cytotoxicity. Mechanistically, NO increased S-nitrosylation of pyruvate kinase M2 (PKM2) and inhibited its activity, which thus diverted glucose metabolic flux from glycolysis into the pentose phosphate pathway to increase production of reducing equivalents (NADPH and GSH) and eventually prevented H2O2-induced oxidative damage. These findings open new avenues for protection of cochlear hair cells from oxidative stress and prevention of NIHL through NO modulation of PKM2 and glucose metabolism reprogramming.
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