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γ 射线诱导小鼠原代培养神经胶质细胞内质网应激和基因组不稳定性

ER stress and genomic instability induced by gamma radiation in mice primary cultured glial cells.

机构信息

Department of Applied Zoology, Mangalore University, Mangalagangotri, Mangalore, Karnataka State, 574199, India.

Department of Physics, P.A College of Engineering, Mangalore, 574153, India.

出版信息

Metab Brain Dis. 2018 Jun;33(3):855-868. doi: 10.1007/s11011-018-0183-9. Epub 2018 Feb 10.

Abstract

Ionizing radiation induces various pathophysiological conditions by altering central nervous system (CNS) homeostasis, leading to neurodegenerative diseases. However, the potential effect of ionizing radiation response on cellular physiology in glial cells is unclear. In the present study, micronucleus test, comet assay, and RT-PCR were performed to investigate the potential effect of gamma radiation in cultured oligodendrocytes and astrocytes with respect to genomic instability, Endoplasmic Reticulum (ER) stress, and inflammation. Further, we studied the effect of alteration in ER stress specific gene expression in cortex post whole body radiation in mice. Results showed that exposure of gamma radiation of 2Gy in-vitro cultured astrocytes and oligodendrocytes and 7Gy in-vivo induced ER stress and Inflammation along with profuse DNA damage and Chromosomal abnormality. Additionally, we observed downregulation of myelin basic protein levels in cultured oligodendrocytes exposed to radiation. The present data suggests that ER stress and pro inflammatory cytokines serve as the major players in inducing glial cell dysfunction post gamma irradiation along with induction of genomic instability. Taken together, these results indicate that ER stress, DNA damage, and inflammatory pathways may be critical events leading to glial cell dysfunction and subsequent cell death following exposure to ionizing radiation.

摘要

电离辐射通过改变中枢神经系统 (CNS) 的内稳态,导致神经退行性疾病,从而引起各种病理生理状况。然而,电离辐射反应对神经胶质细胞细胞生理学的潜在影响尚不清楚。在本研究中,进行了微核试验、彗星试验和 RT-PCR,以研究伽马射线对培养的少突胶质细胞和星形胶质细胞的潜在影响,涉及基因组不稳定性、内质网 (ER) 应激和炎症。此外,我们研究了 ER 应激特异性基因表达改变对全身辐射后小鼠皮质的影响。结果表明,体外培养的星形胶质细胞和少突胶质细胞暴露于 2Gy 的伽马射线和体内 7Gy 的伽马射线会引起内质网应激和炎症,同时伴有大量的 DNA 损伤和染色体异常。此外,我们观察到暴露于辐射的培养少突胶质细胞中髓鞘碱性蛋白水平下调。这些数据表明,内质网应激和促炎细胞因子是伽马照射后诱导神经胶质细胞功能障碍的主要因素,同时还诱导了基因组不稳定性。总之,这些结果表明,内质网应激、DNA 损伤和炎症途径可能是导致暴露于电离辐射后神经胶质细胞功能障碍和随后细胞死亡的关键事件。

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