Neat1 decreases neuronal apoptosis after oxygen and glucose deprivation

被引:0
|
作者
Wei-Na Chai [1 ]
Yi-Fan Wu [1 ]
Zhi-Min Wu [1 ]
Yan-Feng Xie [1 ]
Quan-Hong Shi [1 ]
Wei Dan [1 ]
Yan Zhan [1 ]
Jian-Jun Zhong [1 ]
Wei Tang [1 ]
Xiao-Chuan Sun [1 ]
Li Jiang [1 ]
机构
[1] Department of Neurosurgery,First Affiliated Hospital of Chongqing Medical University
基金
中国国家自然科学基金;
关键词
D O I
暂无
中图分类号
R338 [神经生理学];
学科分类号
0710 ; 071006 ;
摘要
Studies have shown that downregulation of nuclear-enriched autosomal transcript 1(Neat1) may adversely affect the recovery of nerve function and the increased loss of hippocampal neurons in mice. Whether Neat1 has protective or inhibitory effects on neuronal cell apoptosis after secondary brain injury remains unclear. Therefore, the effects of Neat1 on neuronal apoptosis were observed. C57 BL/6 primary neurons were obtained from the cortices of newborn mice and cultured in vitro, and an oxygen and glucose deprivation cell model was established to simulate the secondary brain injury that occurs after traumatic brain injury in vitro. The level of Neat1 expression in neuronal cells was regulated by constructing a recombinant adenovirus to infect neurons, and the effects of Neat1 expression on neuronal apoptosis after oxygen and glucose deprivation were observed. The experiment was divided into four groups: the control group, without any treatment, received normal culture; the oxygen and glucose deprivation group were subjected to the oxygen and glucose deprivation model protocol; the Neat1 overexpression and Neat1 downregulation groups were treated with Neat1 expression intervention techniques and were subjected to the in oxygen and glucose deprivation protocol. The protein expression levels of neurons p53-induced death domain protein 1(PIDD1, a pro-apoptotic protein), caspase-2(an apoptotic priming protein), cytochrome C(a pro-apoptotic protein), and cleaved caspase-3(an apoptotic executive protein) were measured in each group using the western blot assay. To observe changes in the intracellular distribution of cytochrome C, the expression levels of cytochrome C in the cytoplasm and mitochondria of neurons from each group were detected by western blot assay. Differences in the cell viability and apoptosis rate between groups were detected by cell-counting kit 8 assay and terminal deoxynucleotidyl transferase dUTP nick-end labeling assay, respectively. The results showed that the apoptosis rate, PIDD1, caspase-2, and cleaved caspase-3 expression levels significantly decreased, and cell viability significantly improved in the Neat1 overexpression group compared with the oxygen and glucose deprivation group; however, Neat1 downregulation reversed these changes. Compared with the Neat1 downregulation group, the cytosolic cytochrome C level in the Neat1 overexpression group significantly decreased, and the mitochondrial cytochrome C level significantly increased. These data indicate that Neat1 upregulation can reduce the release of cytochrome C from the mitochondria to the cytoplasm by inhibiting the PIDD1-caspase-2 pathway, reducing the activation of caspase-3, and preventing neuronal apoptosis after oxygen and glucose deprivation, which might reduce secondary brain injury after traumatic brain injury. All experiments were approved by the Animal Ethics Committee of the First Affiliated Hospital of Chongqing Medical University, China, on December 19, 2020(approval No. 2020-895).
引用
收藏
页码:163 / 169
页数:7
相关论文
共 50 条
  • [1] Neat1 decreases neuronal apoptosis after oxygen and glucose deprivation
    Chai, Wei-Na
    Wu, Yi-Fan
    Wu, Zhi-Min
    Xie, Yan-Feng
    Shi, Quan-Hong
    Dan, Wei
    Zhan, Yan
    Zhong, Jian-Jun
    Tang, Wei
    Sun, Xiao-Chuan
    Jiang, Li
    NEURAL REGENERATION RESEARCH, 2022, 17 (01) : 163 - 169
  • [2] BLOCKADE OF GLUTAMATE RECEPTORS UNMASKS NEURONAL APOPTOSIS AFTER OXYGEN-GLUCOSE DEPRIVATION IN-VITRO
    GWAG, BJ
    LOBNER, D
    KOH, JY
    WIE, MB
    CHOI, DW
    NEUROSCIENCE, 1995, 68 (03) : 615 - 619
  • [3] Knockdown lncRNA NEAT1 regulates the activation of microglia and reduces AKT signaling and neuronal apoptosis after cerebral ischemic reperfusion
    Xunran Ni
    Qian Su
    Wenbo Xia
    Yanli Zhang
    Kejuan Jia
    Zhiqiang Su
    Guozhong Li
    Scientific Reports, 10
  • [4] Oxygen and glucose deprivation-induced neuronal apoptosis is attenuated by halothane and isoflurane
    Wise-Faberowski, L
    Raizada, MK
    Sumners, C
    ANESTHESIA AND ANALGESIA, 2001, 93 (05): : 1281 - 1287
  • [5] Knockdown lncRNA NEAT1 regulates the activation of microglia and reduces AKT signaling and neuronal apoptosis after cerebral ischemic reperfusion
    Ni, Xunran
    Su, Qian
    Xia, Wenbo
    Zhang, Yanli
    Jia, Kejuan
    Su, Zhiqiang
    Li, Guozhong
    SCIENTIFIC REPORTS, 2020, 10 (01)
  • [6] PirB Overexpression Exacerbates Neuronal Apoptosis by Inhibiting TrkB and mTOR Phosphorylation After Oxygen and Glucose Deprivation Injury
    Zhao, Zhao-hua
    Deng, Bin
    Xu, Hao
    Zhang, Jun-feng
    Mi, Ya-jing
    Meng, Xiang-zhong
    Gou, Xing-chun
    Xu, Li-xian
    CELLULAR AND MOLECULAR NEUROBIOLOGY, 2017, 37 (04) : 707 - 715
  • [7] PirB Overexpression Exacerbates Neuronal Apoptosis by Inhibiting TrkB and mTOR Phosphorylation After Oxygen and Glucose Deprivation Injury
    Zhao-hua Zhao
    Bin Deng
    Hao Xu
    Jun-feng Zhang
    Ya-jing Mi
    Xiang-zhong Meng
    Xing-chun Gou
    Li-xian Xu
    Cellular and Molecular Neurobiology, 2017, 37 : 707 - 715
  • [8] Icariin enhances neuronal survival after oxygen and glucose deprivation by increasing SIRT1
    Wang, Lin
    Zhang, Ling
    Chen, Zhi-Bin
    Wu, Jia-Yong
    Zhang, Xin
    Xu, Yun
    EUROPEAN JOURNAL OF PHARMACOLOGY, 2009, 609 (1-3) : 40 - 44
  • [9] Ghrelin inhibits apoptosis in hypothalamic neuronal cells during oxygen-glucose deprivation
    Chung, Hyunju
    Kim, Eunhee
    Lee, Dae Hee
    Seo, Sanghee
    Ju, Sunghee
    Lee, Dahm
    Kim, Hocheol
    Park, Seungjoon
    ENDOCRINOLOGY, 2007, 148 (01) : 148 - 159
  • [10] Effects of potassium channel on neuronal apoptosis induced by oxygen-glucose deprivation with or without astrocytes
    Liu, Dong-mei
    Wang, Xiao-liang
    ACTA PHARMACOLOGICA SINICA, 2013, 34 : 109 - 109