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Wnt activation protects against neomycin-induced hair cell damage in the mouse cochlea

机译:WNT活化可保护鼠标耳蜗中的新霉素诱导的毛细胞损伤

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Recent studies have reported the role of Wnt/ β -catenin signaling in hair cell (HC) development, regeneration, and differentiation in the mouse cochlea; however, the role of Wnt/ β -catenin signaling in HC protection remains unknown. In this study, we took advantage of transgenic mice to specifically knockout or overactivate the canonical Wnt signaling mediator β -catenin in HCs, which allowed us to investigate the role of Wnt/ β -catenin signaling in protecting HCs against neomycin-induced damage. We first showed that loss of β -catenin in HCs made them more vulnerable to neomycin-induced injury, while constitutive activation of β -catenin in HCs reduced HC loss both in vivo and in vitro . We then showed that loss of β -catenin in HCs increased caspase-mediated apoptosis induced by neomycin injury, while β -catenin overexpression inhibited caspase-mediated apoptosis. Finally, we demonstrated that loss of β -catenin in HCs led to increased expression of forkhead box O3 transcription factor (Foxo3) and Bim along with decreased expression of antioxidant enzymes; thus, there were increased levels of reactive oxygen species (ROS) after neomycin treatment that might be responsible for the increased aminoglycoside sensitivity of HCs. In contrast, β -catenin overexpression reduced Foxo3 and Bim expression and ROS levels, suggesting that β -catenin is protective against neomycin-induced HC loss. Our findings demonstrate that Wnt/ β -catenin signaling has an important role in protecting HCs against neomycin-induced HC loss and thus might be a new therapeutic target for the prevention of HC death.
机译:最近的研究报告了WNT /β-CATENIN信号传导在小鼠耳蜗(HC)发育,再生和分化中的作用中的作用;然而,HC保护中Wnt /β-catenin信号传导的作用仍然未知。在这项研究中,我们利用转基因小鼠特异性敲除或过度激活HCS中的规范Wnt信号传导介质β-Catenin,这使我们能够研究Wnt /β-Catenin信号传导在保护HCS免受新霉素诱导的损伤中的作用。我们首先表明HCS中β-Catenin的损失使其更容易受到新霉素诱导的损伤的影响,而HCS中β-Catenin的组成型活化在体内和体外均可降低HC损失。然后,我们表明,HCS中β-Catenin的损失增加了新霉素损伤诱导的Caspase介导的凋亡,而β-Catenin过表达抑制了Caspase介导的细胞凋亡。最后,我们证明,HCS中β-Catenin的损失导致Forkhead盒O3转录因子(FOXO3)和BIM的表达增加,以及抗氧化酶的表达降低;因此,新霉素治疗后的活性氧物质(ROS)水平升高,这可能负责HCS的氨基糖苷敏感性增加。相反,β-Catenin过表达减少了FoxO3和BIM表达和ROS水平,表明β-霉素对新霉素诱导的HC损失保护。我们的研究结果表明,Wnt /β-霉素信号传导在保护HCS免受新霉素诱导的HC损失中具有重要作用,因此可能是预防HC死亡的新治疗靶标。

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