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抑制12/15脂氧合酶通过减轻氧化/亚硝化应激改善低压缺氧小鼠模型中的认知和胆碱能功能障碍。

Inhibition of 12/15 LOX ameliorates cognitive and cholinergic dysfunction in mouse model of hypobaric hypoxia via. attenuation of oxidative/nitrosative stress.

作者信息

Choudhary Richa, Malairaman Udayabanu, Katyal Anju

机构信息

Dr. B.R. Ambedkar Centre for Biomedical Research, University of Delhi, New Delhi 110007, India.

Department of Pharmacy, Jaypee University of Information Technology, Waknaghat 173234, Himachal Pradesh, India.

出版信息

Neuroscience. 2017 Sep 17;359:308-324. doi: 10.1016/j.neuroscience.2017.07.015. Epub 2017 Jul 15.

Abstract

12/15 Lipoxygenase has recently been described as potent propagator of oxidative stress and is closely associated with cognitive decline in neurodegenerative diseases. The mechanism/s behind 12/15 LOX involvement in cognitive deficits remain obscure. The current study has been designed to investigate the underlying role of 12/15LOX and effect of 12/15 LOX inhibition on hypobaric hypoxia-induced memory impairment and cholinergic deficits. Male Balb/c mice subjected to simulated hypobaric hypoxia/reoxygenation condition for 3days showed marked working memory impairment concomitant with hippocampal neuronal damage and malondialdehyde production which were significantly attenuated by baicalein, a specific inhibitor of 12/15LOX. Hypobaric hypoxia-exposed mice had consistently increased expression of 12/15LOX and elevated 12(S) HETE levels in the hippocampus as well as plasma which were significantly mitigated following baicalein treatment. 12/15LOX inhibition also reduced hypobaric hypoxia-mediated upregulation of hippocampal HIF-1α protein expression along with reduction in expression of inflammatory genes. The inhibition of 12/15 LOX resulted in a significant decrease in NO levels in the hippocampal homogenate associated with downregulated iNOS, nNOS transcription but not eNOS speculating that 12/15 LOX is critically involved in HIF-1α, mediated by nitric oxide-induced neurotoxicity. We also observed a similar effect of 12/15 LOX inhibition on hippocampal COX2 expression. 12/15LOX inhibition could effectively modulate central cholinergic indices during hypobaric hypoxia by restoring mAChR-1, α7NAChR expression and AChE, ChAT activity in the hippocampus comparable to normal mice. We report here the mechanistic involvement of 12/15LOX in orchestrating hypoxia-associated neuronal damage and HIF-1α-dependent neuroinflammation resulting in cognitive decline.

摘要

12/15脂氧合酶最近被描述为氧化应激的强效传播者,并且与神经退行性疾病中的认知衰退密切相关。12/15脂氧合酶参与认知缺陷背后的机制仍不清楚。当前的研究旨在调查12/15脂氧合酶的潜在作用以及12/15脂氧合酶抑制对低压低氧诱导的记忆损伤和胆碱能缺陷的影响。雄性Balb/c小鼠在模拟的低压低氧/复氧条件下处理3天,表现出明显的工作记忆损伤,同时伴有海马神经元损伤和丙二醛生成,而12/15脂氧合酶的特异性抑制剂黄芩素可显著减轻这些损伤。暴露于低压低氧的小鼠海马体以及血浆中12/15脂氧合酶的表达持续增加,12(S)-HETE水平升高,黄芩素治疗后这些情况得到显著缓解。12/15脂氧合酶抑制还降低了低压低氧介导的海马体HIF-1α蛋白表达上调以及炎症基因表达的降低。12/15脂氧合酶的抑制导致海马体匀浆中NO水平显著降低,同时iNOS、nNOS转录下调,但eNOS未下调,推测12/15脂氧合酶关键参与了由一氧化氮诱导的神经毒性介导的HIF-1α。我们还观察到12/15脂氧合酶抑制对海马体COX2表达有类似影响。12/15脂氧合酶抑制可通过恢复海马体中mAChR-1、α7NAChR表达以及AChE、ChAT活性,有效调节低压低氧期间的中枢胆碱能指标,使其与正常小鼠相当。我们在此报告了12/15脂氧合酶在协调缺氧相关神经元损伤和HIF-1α依赖性神经炎症导致认知衰退中的机制性参与。

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