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抑制 CISD1 通过 PI3K 和 MAPK 通路减轻小鼠顺铂诱导的听力损失。

Inhibition of CISD1 attenuates cisplatin-induced hearing loss in mice via the PI3K and MAPK pathways.

机构信息

Shanghai Key Laboratory of Sleep Disordered Breathing, Department of Otolaryngology-Head and Neck Surgery, Otolaryngology Institute of Shanghai Jiao Tong University, Shanghai Sixth People's Hospital Affiliated to Shanghai Jiao Tong University School of Medicine, Shanghai, China.

Department of Otolaryngology, The First Affiliated Hospital, College of Medicine, Zhejiang University, Hangzhou, Zhejiang, China.

出版信息

Biochem Pharmacol. 2024 May;223:116132. doi: 10.1016/j.bcp.2024.116132. Epub 2024 Mar 15.

Abstract

Cisplatin is an effective chemotherapeutic drug for different cancers, but it also causes severe and permanent hearing loss. Oxidative stress and mitochondrial dysfunction in cochlear hair cells (HCs) have been shown to be important in the pathogenesis of cisplatin-induced hearing loss (CIHL). CDGSH iron sulfur domain 1 (CISD1, also known as mitoNEET) plays a critical role in mitochondrial oxidative capacity and cellular bioenergetics. Targeting CISD1 may improve mitochondrial function in various diseases. However, the role of CISD1 in cisplatin-induced ototoxicity is unclear. Therefore, this study was performed to assess the role of CISD1 in cisplatin-induced ototoxicity. We found that CISD1 expression was significantly increased after cisplatin treatment in both HEI-OC1 cells and cochlear HCs. Moreover, pharmacological inhibition of CISD1 with NL-1 inhibited cell apoptosis and reduced mitochondrial reactive oxygen species accumulation in HEI-OC1 cells and cochlear explants. Inhibition of CISD1 with small interfering RNA in HEI-OC1 cells had similar protective effects. Furthermore, NL-1 protected against CIHL in adult C57 mice, as evaluated by the auditory brainstem response and immunofluorescent staining. Mechanistically, RNA sequencing revealed that NL-1 attenuated CIHL via the PI3K and MAPK pathways. Most importantly, NL-1 did not interfere with the antitumor efficacy of cisplatin. In conclusion, our study revealed that targeting CISD1 with NL-1 reduced reactive oxygen species accumulation, mitochondrial dysfunction, and apoptosis via the PI3K and MAPK pathways in HEI-OC1 cell lines and mouse cochlear explants in vitro, and it protected against CIHL in adult C57 mice. Our study suggests that CISD1 may serve as a novel target for the prevention of CIHL.

摘要

顺铂是一种用于多种癌症的有效化疗药物,但它也会导致严重且永久性的听力损失。耳蜗毛细胞(HCs)中的氧化应激和线粒体功能障碍已被证明在顺铂诱导的听力损失(CIHL)发病机制中很重要。CDGSH 铁硫结构域 1(CISD1,也称为 mitoNEET)在线粒体氧化能力和细胞生物能量学中发挥着关键作用。靶向 CISD1 可能会改善各种疾病中的线粒体功能。然而,CISD1 在顺铂诱导的耳毒性中的作用尚不清楚。因此,本研究旨在评估 CISD1 在顺铂诱导的耳毒性中的作用。我们发现顺铂处理后 HEI-OC1 细胞和耳蜗 HCs 中的 CISD1 表达均显著增加。此外,用 NL-1 抑制 CISD1 的药理作用可抑制 HEI-OC1 细胞和耳蜗外植体中的细胞凋亡并减少线粒体活性氧物质的积累。在 HEI-OC1 细胞中用小干扰 RNA 抑制 CISD1 也具有类似的保护作用。此外,NL-1 通过听觉脑干反应和免疫荧光染色对成年 C57 小鼠的 CIHL 具有保护作用。从机制上讲,RNA 测序表明 NL-1 通过 PI3K 和 MAPK 通路减轻 CIHL。最重要的是,NL-1 不干扰顺铂的抗肿瘤功效。总之,我们的研究表明,用 NL-1 靶向 CISD1 通过 PI3K 和 MAPK 通路减少了 HEI-OC1 细胞系和小鼠耳蜗外植体中的活性氧物质积累、线粒体功能障碍和细胞凋亡,并在成年 C57 小鼠中预防了 CIHL。我们的研究表明,CISD1 可能成为预防 CIHL 的新靶点。

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