Lin Muh-Shi
Division of Neurosurgery, Department of Surgery, Kuang Tien General Hospital, Taichung, Taiwan.
Department of Biotechnology and Animal Science, College of Bioresources, National Ilan University, Yilan, Taiwan.
Front Aging Neurosci. 2020 Aug 26;12:260. doi: 10.3389/fnagi.2020.00260. eCollection 2020.
: Accumulating evidence has demonstrated a significant association between microglia-driven inflammation in the brain and neurodegenerative dementia. We previously showed a significant decline in CISD2 expression in mice models with advanced age. Moreover, we observed that the knockdown of CISD2 led to remarkable inflammation and mitochondrial dysfunction in neural cells. In the present study, we investigated whether CISD2 attenuation influences anti-inflammatory effects and M1-M2 polarization in microglia. : The knockdown of CISD2 expression by siRNA (siCISD2) in EOC microglial cells was performed to mimic the age-driven decline of CISD2 expression. The extent of the inflammatory reaction, polarization in the M1/M2 spectrum, and NFκB activation were verified in EOC microglial cells exhibiting CISD2 deficiency. : In the cellular model of microglia, loss of CISD2 function mediated by siCISD2 exhibited a significant augmentation of proinflammatory signaling, as well as reduced expression levels of Arg-1, Ym1, IL-10, and BCL2. Attenuation of CISD2 expression led to a decrease in the proportion of the M2 phenotype of microglia (compared to M1). Enhanced DNA-binding activity of the NFκB p65 subunit was confirmed in cells transfected with siCISD2, as demonstrated by enzyme-linked immunosorbent assay (ELISA). : To the best of our knowledge, this is the first report examining the following phenomena: (1) anti-inflammatory effects of CISD2 in microglia NFκB regulation; and (2) microglial CISD2 assistance in the restoration of M2 microglia phenotype. The anti-inflammatory effects of CISD2 in microglia eventually augment anti-apoptotic effects, which provides a rationale for the development of potential therapeutic target for neurodegenerative diseases and neurodegenerative dementia.
越来越多的证据表明,大脑中由小胶质细胞驱动的炎症与神经退行性痴呆之间存在显著关联。我们之前发现,在老年小鼠模型中,CISD2的表达显著下降。此外,我们观察到敲低CISD2会导致神经细胞中出现明显的炎症和线粒体功能障碍。在本研究中,我们调查了CISD2水平降低是否会影响小胶质细胞的抗炎作用以及M1-M2极化。
通过在EOC小胶质细胞中使用siRNA(siCISD2)敲低CISD2表达,以模拟年龄驱动的CISD2表达下降。在表现出CISD2缺陷的EOC小胶质细胞中,验证了炎症反应的程度、M1/M2谱系中的极化以及NFκB激活情况。
在小胶质细胞的细胞模型中,由siCISD2介导的CISD2功能丧失表现出促炎信号的显著增强,以及Arg-1、Ym1、IL-10和BCL2的表达水平降低。CISD2表达的减弱导致小胶质细胞M2表型的比例下降(与M1相比)。通过酶联免疫吸附测定(ELISA)证实,在转染了siCISD2的细胞中,NFκB p65亚基的DNA结合活性增强。
据我们所知,这是第一份研究以下现象的报告:(1)CISD2在小胶质细胞中的抗炎作用及NFκB调节;(2)小胶质细胞CISD2对M2小胶质细胞表型恢复的辅助作用。CISD2在小胶质细胞中的抗炎作用最终增强了抗凋亡作用,这为神经退行性疾病和神经退行性痴呆潜在治疗靶点的开发提供了理论依据。