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Apoptosis Induction by Iron Radiation via Inhibition of Autophagy in Trp53+/-Mouse Testes: Is Chronic Restraint-Induced Stress a Modifying Factor?

机译:通过抑制Trp53 +/-小鼠睾丸中自噬抑制铁辐射诱导的细胞凋亡:慢性约束诱导的应激是否是调节因子?

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摘要

We used chronic restraint-induced stress (CRIS) and iron ionizing radiation (IR) to mimic human exposure to psychological stress (PS) and IR in a mouse model, and to investigate the relationship among endoplasmic reticulum stress (ERS), apoptosis and autophagy in testicular toxicity. Male Trp53+/- C57BL/6N mice were restrained for 6 h/day for 28 consecutive days, and total body irradiation with 0.1 or 2 Gy iron ion beam was performed on the day 8. Histopathological observation showed severely damaged spermatogenic cells, increased apoptotic cells, caspase-3 activation and cytochrome c release, indicating that IR and CRIS+IR induced testicular cell apoptosis. Upregulation of GRP78 (78-kDa glucose-regulated protein) suggested that IR and CRIS+IR induced ERS in the testes, and further analysis showed that apoptosis was enhanced by ERS through activation of the PERK/eIF2α/ATF4/CHOP pathway. Decreased expression of LC3II, Atg5 (autophagy related 5) and Beclin 1, and increased expression of p62, combined with ultrastructural changes seen under transmission electron microscopy, suggest that IR and CRIS+IR inhibit autophagosome formation. This process was related to inhibition of autophagy via activation of the PI3K/AKT/mTOR pathway under ERS. We showed that apoptosis was strengthened and autophagy was inhibited by ERS in mouse testes induced by IR and CRIPS+IR. These results showed that CRIS+IR had no difference in apoptosis induction and autophagy inhibition compared with IR alone. CIRS alone could induce apoptosis only in Leydig cells and its induction of pathological and molecular changes in testicular tissues was only a small extent as compared to those induced by IR. Of note, we showed that 28 consecutive days of CRIS did not exacerbate IR effects (no additive effect with IR). These findings also suggest that studies on the concurrent exposure to PS and IR should be done using different endpoints in both short and long-term CRIS models.
机译:我们使用慢性约束诱导应激(CRIS)和铁电离辐射(IR)来模拟人类暴露于小鼠模型中的心理应激(PS)和IR,并研究内质网应激(ERS),细胞凋亡和自噬之间的关系在睾丸毒性。将雄性Trp53 +/- C57BL / 6N小鼠连续28天抑制6 h /天,并在第8天进行0.1或2 Gy铁离子束的全身照射。生精细胞严重受损,凋亡细胞增多,caspase-3活化和细胞色素c释放,表明IR和CRIS + IR诱导睾丸细胞凋亡。 GRP78(78 kDa葡萄糖调节蛋白)的上调表明IR和CRIS + IR诱导了睾丸中的ERS,进一步的分析表明ERS通过激活PERK /eIF2α/ ATF4 / CHOP途径增强了细胞凋亡。 LC3II,Atg5(自噬相关5)和Beclin 1的表达降低,而p62的表达增加,再加上在透射电镜下观察到的超微结构变化,表明IR和CRIS + IR抑制了自噬体的形成。该过程与通过在ERS下激活PI3K / AKT / mTOR途径抑制自噬有关。我们表明,在IR和CRIPS + IR诱导的小鼠睾丸中,ERS可增强细胞凋亡并抑制自噬。这些结果表明,与单独的IR相比,CRIS + IR在凋亡诱导和自噬抑制方面没有差异。仅CIRS只能诱导Leydig细胞凋亡,其诱导睾丸组织的病理和分子变化与IR相比仅占很小的比例。值得注意的是,我们显示连续28天的CRIS并没有加剧IR的影响(IR没有累加作用)。这些发现还表明,应在短期和长期CRIS模型中使用不同的终点进行同时暴露于PS和IR的研究。

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