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miR‐322 treatment rescues cell apoptosis and neural tube defect formation through silencing NADPH oxidase 4

机译:MiR-322治疗通过沉默NADPH氧化酶4拯救细胞凋亡和神经管缺陷形成

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Aims Failure of neural tube closure resulting from excessive apoptosis leads to neural tube defects (NTDs). NADPH oxidase 4 (NOX4)?is a critical mediator of cell growth and death, yet its role in NTDs has never been?characterized. NOX4 is a potential target of miR‐322, and we have previously demonstrated that miR‐322 was involved in high glucose‐induced NTDs. In this study, we investigated the effect of NOX4 on the embryonic neuroepithelium in NTDs and reveal a new regulatory mechanism for miR‐322 that disrupts neurulation by ameliorating cell apoptosis. Methods All‐trans‐retinoic acid (ATRA)‐induced mouse model was utilized to study NTDs. RNA pull‐down and dual‐luciferase reporter assays were used to confirm the interaction between NOX4 and miR‐322. In mouse neural stem cells and whole‐embryo culture, Western blot and TUNEL were carried out to investigate the effects of miR‐322 and NOX4 on neuroepithelium apoptosis in NTD formation. Results NOX4, as a novel target of miR‐322, was upregulated in ATRA‐induced mouse model of NTDs. In mouse neural stem cells, the expression of NOX4 was inhibited by miR‐322; still further, NOX4‐triggered apoptosis was also suppressed by miR‐322. Moreover, in whole‐embryo culture, injection of the miR‐322 mimic into the amniotic cavity attenuated cell apoptosis in NTD formation by silencing NOX4. Conclusion miR‐322/NOX4 plays a crucial role in apoptosis‐induced NTD formation, which may provide a new understanding of the mechanism of embryonic NTDs and a basis for potential therapeutic target against NTDs.
机译:目的是由于细胞凋亡过多导致神经管缺陷(NTD)引起的神经管闭合失败。 NADPH氧化酶4(NOX4)?是细胞生长和死亡的临界介质,但其在NTD中的作用从未如此?特征。 NOx4是miR-322的潜在靶标,我们以前证明MIR-322参与高葡萄糖诱导的NTD。在这项研究中,我们研究了NOx4对NTDS胚胎神经脑膜炎的影响,揭示了MIR-322的新调节机制,通过改善细胞凋亡破坏了神经抑制。方法采用全转铁酸(ATRA)诱导的小鼠模型研究NTD。 RNA下拉和双荧光素酶报告结果用于确认NOX4和MIR-322之间的相互作用。在小鼠神经干细胞和全胚胎培养物中,进行Western印迹和调节,以研究MiR-322和NOx4对NTD形成中神经脑细胞凋亡的影响。结果NOX4作为MIR-322的新靶标在ATRA诱导的NTD小鼠模型中。在小鼠神经干细胞中,MiR-322抑制NOx4的表达;此外,MiR-322还抑制了NOX4触发的细胞凋亡。此外,在全胚胎培养物中,通过沉默NOx4将MIR-322模仿进入羊膜腔内的NTD形成中的细胞凋亡。结论MiR-322 / Nox4在凋亡诱导的NTD形成中起着至关重要的作用,这可能对胚胎NTD的机制和对NTD的潜在治疗目标的基础提供了新的理解。

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