Ethanol changes Nestin-promoter induced neural stem cells to disturb newborn dendritic spine remodeling in the hippocampus of mice.

IF 5.9 2区 医学 Q2 CELL BIOLOGY Neural Regeneration Research Pub Date : 2024-02-01 DOI:10.4103/1673-5374.379051
Guixiang Wang, Wenjia Wang, Ye Zhang, Xiaoying Gou, Qingqing Zhang, Yanmiao Huang, Kuo Zhang, Haotian Zhang, Jingyu Yang, Yuting Li
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引用次数: 1

Abstract

Adolescent binge drinking leads to long-lasting disorders of the adult central nervous system, particularly aberrant hippocampal neurogenesis. In this study, we applied in vivo fluorescent tracing using NestinCreERT2::Rosa26-tdTomato mice and analyzed the endogenous neurogenesis lineage progression of neural stem cells (NSCs) and dendritic spine formation of newborn neurons in the subgranular zone of the dentate gyrus. We found abnormal orientation of tamoxifen-induced tdTomato+ (tdTom+) NSCs in adult mice 2 months after treatment with EtOH (5.0 g/kg, i.p.) for 7 consecutive days. EtOH markedly inhibited tdTom+ NSCs activation and hippocampal neurogenesis in mouse dentate gyrus from adolescence to adulthood. EtOH (100 mM) also significantly inhibited the proliferation to 39.2% and differentiation of primary NSCs in vitro. Adult mice exposed to EtOH also exhibited marked inhibitions in dendritic spine growth and newborn neuron maturation in the dentate gyrus, which was partially reversed by voluntary running or inhibition of the mammalian target of rapamycin-enhancer of zeste homolog 2 pathway. In vivo tracing revealed that EtOH induced abnormal orientation of tdTom+ NSCs and spatial misposition defects of newborn neurons, thus causing the disturbance of hippocampal neurogenesis and dendritic spine remodeling in mice.

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乙醇改变Nestin启动子诱导的神经干细胞,干扰小鼠海马新生树突棘重塑。
青少年酗酒会导致成人中枢神经系统的长期紊乱,尤其是海马神经发生异常。在本研究中,我们使用NestinCreERT2::Rosa26-tdTomato小鼠应用体内荧光示踪,并分析了神经干细胞(NSCs)的内源性神经发生谱系进展和齿状回颗粒下区新生神经元的树突棘形成。我们发现,在用EtOH(5.0g/kg,i.p.)治疗连续7天后2个月的成年小鼠中,三苯氧胺诱导的tdTomato+(tdTom+)NSCs定向异常。EtOH可显著抑制青春期至成年期小鼠齿状回tdTom+NSCs的激活和海马神经发生。EtOH(100mM)在体外也显著抑制原发性NSCs的增殖至39.2%和分化。暴露于EtOH的成年小鼠在齿状回的树突棘生长和新生神经元成熟方面也表现出显著的抑制作用,这通过雷帕霉素齐斯同源物2途径增强剂的哺乳动物靶标的自主运行或抑制而部分逆转。体内追踪显示,EtOH诱导tdTom+NSCs定向异常和新生神经元空间错位缺陷,从而导致小鼠海马神经发生和树突棘重塑紊乱。
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来源期刊
Neural Regeneration Research
Neural Regeneration Research CELL BIOLOGY-NEUROSCIENCES
CiteScore
8.00
自引率
9.80%
发文量
515
审稿时长
1.0 months
期刊介绍: Neural Regeneration Research (NRR) is the Open Access journal specializing in neural regeneration and indexed by SCI-E and PubMed. The journal is committed to publishing articles on basic pathobiology of injury, repair and protection to the nervous system, while considering preclinical and clinical trials targeted at improving traumatically injuried patients and patients with neurodegenerative diseases.
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