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缺氧缺血性新生小鼠的预处理触发了钠钙交换体依赖性神经发生。

Preconditioning in hypoxic-ischemic neonate mice triggers Na-Ca exchanger-dependent neurogenesis.

作者信息

Brancaccio P, Anzilotti S, Cuomo O, Vinciguerra A, Campanile M, Herchuelz A, Amoroso S, Annunziato L, Pignataro G

机构信息

Division of Pharmacology, Department of Neuroscience, School of Medicine, University of Naples "Federico II", 80131, Naples, Italy.

Department of Science and Technology, University of Sannio, 82100, Benevento, Italy.

出版信息

Cell Death Discov. 2022 Jul 13;8(1):318. doi: 10.1038/s41420-022-01089-z.

Abstract

To identify alternative interventions in neonatal hypoxic-ischemic encephalopathy, researchers' attention has been focused to the study of endogenous neuroprotective strategies. Based on the preconditioning concept that a subthreshold insult may protect from a subsequent harmful event, we aimed at identifying a new preconditioning protocol able to enhance Ca-dependent neurogenesis in a mouse model of neonatal hypoxia ischemia (HI). To this purpose, we also investigated the role of the preconditioning-linked protein controlling ionic homeostasis, Na/Ca exchanger (NCX). Hypoxic Preconditioning (HPC) was reproduced by exposing P7 mice to 20' hypoxia. HI was induced by isolating and cutting the right common carotid artery. A significant reduction in ischemic damage was observed in mice subjected to 20' hypoxia followed,3 days later, by 60' HI, thus suggesting that 20' hypoxia functions as preconditioning stimulus. HPC promoted neuroblasts proliferation in the dentate gyrus mirrored by an increase of NCX1 and NCX3-positive cells and an improvement of behavioral motor performances in HI mice. An attenuation of HPC neuroprotection as well as a reduction in the expression of neurogenesis markers, including p57 and NeuroD1, was observed in preconditioned mice lacking NCX1 or NCX3. In summary, PC in neonatal mice triggers a neurogenic process linked to ionic homeostasis maintenance, regulated by NCX1 and NCX3.

摘要

为了确定新生儿缺氧缺血性脑病的替代干预措施,研究人员的注意力已集中在内源性神经保护策略的研究上。基于阈下损伤可能保护机体免受后续有害事件影响的预处理概念,我们旨在确定一种新的预处理方案,该方案能够在新生儿缺氧缺血(HI)小鼠模型中增强钙依赖性神经发生。为此,我们还研究了与预处理相关的控制离子稳态的蛋白——钠钙交换体(NCX)的作用。通过将P7小鼠暴露于20分钟的低氧环境中来模拟低氧预处理(HPC)。通过分离并切断右侧颈总动脉诱导HI。在经历20分钟低氧、3天后再经历60分钟HI的小鼠中,观察到缺血损伤显著减轻,这表明20分钟的低氧起到了预处理刺激的作用。HPC促进了齿状回中神经母细胞的增殖,表现为NCX1和NCX3阳性细胞增加以及HI小鼠行为运动表现改善。在缺乏NCX1或NCX3的预处理小鼠中,观察到HPC神经保护作用减弱以及包括p57和NeuroD1在内的神经发生标志物表达降低。总之,新生小鼠中的预处理触发了与离子稳态维持相关的神经发生过程,该过程由NCX1和NCX3调节。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/03f4/9279453/d65e2d550687/41420_2022_1089_Fig1_HTML.jpg

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