基于RNA-seq和分子生物学实验解读RG108在顺铂诱导HEI-OC1耳毒性中的潜在能力

IF 2.7 3区 生物学
Dongdong Zhang, Yixin Sun, Min Lei, Yue Wang, Chengfu Cai
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引用次数: 0

摘要

背景:药物性听力损失(DIHL)十分常见,严重影响人们的生活幸福感。RG108是一种小分子抑制剂。RG108对DIHL有保护作用。我们的目的是探讨RG108在顺铂所致耳毒性中的发生率。材料与方法:研究RG108对HEI-OC1的耳毒性。显微镜下观察RG108对顺铂诱导的耳蜗毛细胞是否有影响。进一步进行RNA-seq实验,探索可能的基因本体(GO)及其途径。采用ROS法观察RG108对听觉细胞氧化损伤的影响。在听觉细胞中,用Western blotting (WB)检测RG108对凋亡相关蛋白的影响。结果:氧化石墨烯分析显示RG108与细胞凋亡相关。KEGG分析显示RG108可能在听力损失中作用于PI3K-AKT信号通路(PASP)。BIOCARTA分析表明,RG108可能通过激活NRF2通路影响氧化应激。ROS发现RG108对HEI-OC1的氧化损伤有修复作用。RG108挽救了顺铂诱导的Bax显著升高和BCL2显著降低。RG108通过上调磷酸化的PI3K和磷酸化的AKT以及下调caspase3来减轻顺铂诱导的耳蜗凋亡。MTT实验显示,PI3K和AKT抑制剂均能显著挽救顺铂对HEI-OC1的损伤。RG108显著提高顺铂诱导细胞中NRF2/HO-1/NQO1水平。结论:综上所述,这些结果证明NRF2/PI3K-AKT轴可能介导RG108参与DIHL的治疗,为药物性耳聋的治疗提供了更广阔的前景。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Deciphering the potential ability of RG108 in cisplatin-induced HEI-OC1 ototoxicity: a research based on RNA-seq and molecular biology experiment.

Deciphering the potential ability of RG108 in cisplatin-induced HEI-OC1 ototoxicity: a research based on RNA-seq and molecular biology experiment.

Deciphering the potential ability of RG108 in cisplatin-induced HEI-OC1 ototoxicity: a research based on RNA-seq and molecular biology experiment.

Deciphering the potential ability of RG108 in cisplatin-induced HEI-OC1 ototoxicity: a research based on RNA-seq and molecular biology experiment.

Background: Drug-induced hearing loss (DIHL) is very common, and seriously affects people's happiness in life. RG108 is a small molecule inhibitor. RG108 is protective against DIHL. Our purpose is to probe the incidence of RG108 on cisplatin-induced ototoxicity.

Materials and methods: In our research, the ototoxicity of RG108 was investigated in HEI-OC1. We observed under the microscope whether RG108 had an effect on cisplatin-induced cochlear hair cells. RNA-seq experiments were further performed to explore possible gene ontology (GO) and pathways. ROS assay was applied to supervisory the effect of RG108 on oxidative harm of auditory cells. In auditory cells, RG108 was tested for its effects on apoptosis-related proteins by Western blotting (WB).

Results: GO analysis showed that RG108 associated with apoptosis. KEGG analysis shows RG108 may act on PI3K-AKT signaling pathway (PASP) in hearing loss. BIOCARTA analysis showed that RG108 may affect oxidative stress by activating NRF2 pathway. ROS ascerted that RG108 could rescue oxidative harm in HEI-OC1. RG108 rescued cisplatin-induced significant increase in Bax and significant decrease in BCL2. RG108 attenuates cisplatin-induced cochlear apoptosis through upregulated phosphorylated PI3K and phosphorylated AKT and down-regulated caspase3. MTT experiments showed that both PI3K and AKT inhibitors could significantly rescue the damage caused by cisplatin to HEI-OC1. RG108 significantly increases the level of NRF2/HO-1/NQO1 in cisplatin-induced cells.

Conclusion: Overall, these results provide evidence that NRF2/PI3K-AKT axis may mediate RG108 in the treatment of DIHL, which provide a broader outlook on drug-induced deafness treatment.

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来源期刊
Hereditas
Hereditas Biochemistry, Genetics and Molecular Biology-Genetics
CiteScore
3.80
自引率
3.70%
发文量
0
期刊介绍: For almost a century, Hereditas has published original cutting-edge research and reviews. As the Official journal of the Mendelian Society of Lund, the journal welcomes research from across all areas of genetics and genomics. Topics of interest include human and medical genetics, animal and plant genetics, microbial genetics, agriculture and bioinformatics.
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