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迷走神经传入和传出神经切断对大鼠内毒素诱导氧化应激的影响。

Effects of afferent and efferent denervation of vagal nerve on endotoxin-induced oxidative stress in rats.

机构信息

Department of Toxicology and Narcotics, National Research Centre, Tahrir St., Dokki, Cairo, Egypt,

出版信息

J Neural Transm (Vienna). 2013 Dec;120(12):1673-88. doi: 10.1007/s00702-013-1053-6. Epub 2013 Jun 23.

Abstract

This study investigated the role of vagal innervation in oxidative stress after systemic administration of lipopolysaccharide (LPS) endotoxin. Control rats and rats subjected to bilateral subdiaphragmatic vagotomy, perivagal capsaicin application (5 mg/ml) or cholinergic receptor blockade with subcutaneous atropine (1 mg/kg), were intraperitoneally injected with 300 μg/kg of LPS and euthanized 4 h later. Results indicated that; (1) surgical vagotomy and sensory denervation by perivagal capsaicin increased brain oxidative stress and decreased reduced glutathione in basal condition (saline-treated rats) and following endotoxin challenge; (2) oxidative stress decreased after cholinergic blockade with atropine in endotoxemic rats; (3) nitric oxide decreased by abdominal vagotomy, sensory deafferentation and cholinergic blockade after endotoxin injection; (4) liver lipid peroxidation decreased after surgical vagotomy and cholinergic blockade but increased after sensory deafferentation; (5) liver reduced glutathione decreased following vagotomy and sensory denervation in basal state and by cholinergic blockade in basal state and during endotoxemia; (6) nitric oxide increased by vagotomy in basal state and by sensory denervation and cholinergic blockade in basal state and during endotoxemia; (7) liver histological damage increased by subdiaphragmatic vagotomy, sensory denervation or cholinergic blockade. These findings suggest that: (1) sensory fibers (signals from the periphery) running in the vagus nerves are important in maintaining the redox status of the brain; (2) capsaicin vagal sensory nerves are likely to maintain nitric oxide tone in basal conditions; (3) the vagus nerve modulates liver redox status and nitric oxide release, (4) the vagus nerve mediates protective role in the liver with both cholinergic and capsaicin-sensitive mechanisms being involved.

摘要

本研究探讨了迷走神经支配在全身给予脂多糖(LPS)内毒素后氧化应激中的作用。对照大鼠和双侧膈下迷走神经切断大鼠、迷走神经周围应用辣椒素(5mg/ml)或皮下给予阿托品(1mg/kg)的大鼠,腹腔内注射 300μg/kg LPS,4 小时后处死。结果表明:(1)膈下迷走神经切断术和迷走神经周围辣椒素感觉神经切断术增加了基础状态(生理盐水处理大鼠)和内毒素攻击后的大脑氧化应激,并降低了还原型谷胱甘肽;(2)内毒素血症大鼠用阿托品阻断胆碱能后氧化应激减少;(3)内毒素注射后,腹部迷走神经切断术、感觉去传入和胆碱能阻断导致一氧化氮减少;(4)肝脂质过氧化在内毒素血症大鼠手术后迷走神经切断和胆碱能阻断后减少,但感觉去传入后增加;(5)基础状态下迷走神经切断和感觉去传入,以及基础状态和内毒素血症期间用胆碱能阻断可导致基础状态和内毒素血症期间肝还原型谷胱甘肽减少;(6)基础状态下迷走神经切断术和感觉去传入术以及基础状态和内毒素血症期间的胆碱能阻断会增加一氧化氮;(7)膈下迷走神经切断术、感觉去传入或胆碱能阻断会增加肝组织损伤。这些发现表明:(1)迷走神经中的感觉纤维(来自外周的信号)在维持大脑氧化还原状态中很重要;(2)辣椒素迷走神经感觉神经可能在基础条件下维持一氧化氮张力;(3)迷走神经调节肝脏氧化还原状态和一氧化氮释放;(4)迷走神经通过涉及胆碱能和辣椒素敏感机制在内的机制介导肝脏的保护作用。

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