Otani Hiroshi, Jesmin Subrina, Togashi Hiroko, Sakuma Ichiro, Nakai Kunihiko, Satoh Hiroshi, Yoshioka Mitsuhiro, Kitabatake Akira
Department of Neuropharmacology, Hokkaido University Graduate School of Medicine, Sapporo 060-8638, Japan.
J Pharmacol Sci. 2004 Oct;96(2):188-98. doi: 10.1254/jphs.fp0040385. Epub 2004 Oct 9.
Evidence suggests that S-nitrosylation is a biological process involved in cerebral ischemia. The aim of the present study was to elucidate the effects of S-nitrosylated (SNO) polyethylene glycol-conjugated (PEG) hemoglobin (Hb) developed as an artificial oxygen carrier, which can absorb free NO and translocate NO to a sulfhydryl (SH) moiety, on ischemic cerebral dysfunction. Long-term potentiation (LTP) in the perforant path-dentate gyrus synapses of the rat hippocampus was evaluated as functional outcome 4 days after transient incomplete cerebral ischemia (2-vessel occlusion: 2VO, 10 min). SNO-PEG-Hb (250 mg/kg, i.v.) administered on Day 0, 1, 2, or 4 (immediately, 24 h, 48 h, or 96 h after reperfusion, respectively) alleviated 2VO-induced LTP impairment with a therapeutic time window. The effect was significant when SNO-PEG-Hb was administered on Day 1 or 2. SNO-PEG-Hb altered NOS features observed in the vehicle-treated 2VO rat, upregulation of eNOS, nNOS, and iNOS expressions at mRNA and protein levels; SNO-PEG-Hb further upregulated eNOS and nNOS and downregulated iNOS expressions. These findings suggest that SNO-PEG-Hb might have protective effects on the rat hippocampus from ischemia/reperfusion-induced functional damages, thereby increasing the therapeutic potential as an artificial oxygen carrier for use in the area of oxygen therapy.
有证据表明,S-亚硝基化是一种参与脑缺血的生物学过程。本研究的目的是阐明作为人工氧载体开发的S-亚硝基化(SNO)聚乙二醇共轭(PEG)血红蛋白(Hb)对缺血性脑功能障碍的影响,该人工氧载体可吸收游离NO并将NO转运至巯基(SH)部分。在短暂性不完全脑缺血(双血管闭塞:2VO,10分钟)后4天,评估大鼠海马穿通通路-齿状回突触中的长时程增强(LTP)作为功能结果。在第0、1、2或4天(分别在再灌注后即刻、24小时、48小时或96小时)静脉注射SNO-PEG-Hb(250mg/kg)可减轻2VO诱导的LTP损伤,且存在治疗时间窗。当在第1天或第2天给予SNO-PEG-Hb时,效果显著。SNO-PEG-Hb改变了在溶剂处理的2VO大鼠中观察到的NOS特征,在mRNA和蛋白质水平上eNOS、nNOS和iNOS表达上调;SNO-PEG-Hb进一步上调eNOS和nNOS并下调iNOS表达。这些发现表明,SNO-PEG-Hb可能对大鼠海马免受缺血/再灌注诱导的功能损伤具有保护作用,从而增加其作为人工氧载体在氧疗领域的治疗潜力。