首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Role of the nitric oxide/cyclic GMP pathway and extracellular environment in the nitric oxide donor-induced increase in dopamine secretion from PC12 cells: a microdialysis in vitro study.
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Role of the nitric oxide/cyclic GMP pathway and extracellular environment in the nitric oxide donor-induced increase in dopamine secretion from PC12 cells: a microdialysis in vitro study.

机译:一氧化氮/环状GMP途径和细胞外环境在一氧化氮供体诱导PC12细胞多巴胺分泌增加中的作用:体外微透析研究。

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In vitro microdialysis was used to investigate the mechanism of nitric oxide (NO) donor-induced changes in dopamine (DA) secretion from PC12 cells. Infusion of the NO-donor S-nitroso-N-acetylpenicillamine (SNAP, 1.0 mm) induced a long-lasting increase in DA and 3-methoxytyramine (3-MT) dialysate concentrations. SNAP-induced increases were inhibited either by pre-infusion of the soluble guanylate cyclase (sGC) inhibitor 1H-[1,2,4] oxadiazolo[4,3]quinoxalin-1-one (ODQ, 0.1 mm) or by Ca2+ omission. Ca2+ re-introduction restored SNAP effects. SNAP-induced increases in DA + 3-MT were unaffected by co-infusion of the l-type Ca2+ channel inhibitor nifedipine. The NO-donor (+/-)-(E)-4-ethyl-2-[(E)-hydroxyimino]-5-nitro-3-hexenamide (NOR-3, 1.0 mm) induced a short-lasting decrease in dialysate DA + 3-MT. Ascorbic acid (0.2 mm) co-infusion allowed NOR-3 to increase dialysate DA + 3-MT. ODQ pre-infusion inhibited NOR-3 + ascorbic acid-induced DA + 3-MT increases. Infusion of high K+ (75 mm) induced a 2.5-fold increase in dialysate DA + 3-MT. The increase was abolished by NOR-3 co-infusion. Conversely, co-infusion of ascorbic acid (0.2 mm) with NOR-3 + high K+ restored high K+ effects. Co-infusion of nifedipine inhibited high K+-induced DA + 3-MT increases. These results suggest that activation of the NO/sGC/cyclic GMP pathway may be the underlying mechanism of extracellular Ca2+-dependent effects of exogenous NO on DA secretion from PC12 cells. Extracellular Ca2+ entry may occur through nifedipine-insensitive channels. NO effects and DA concentrations in dialysates largely depend on both the timing of NO generation and the extracellular environment in which NO is generated.
机译:体外微透析用于研究一氧化氮(NO)供体诱导PC12细胞多巴胺(DA)分泌变化的机制。注入NO供体S-亚硝基-N-乙酰青霉胺(SNAP,1.0 mm)导致DA和3-甲氧基酪胺(3-MT)透析液浓度的长期增加。预先注入可溶性鸟苷酸环化酶(sGC)抑制剂1H- [1,2,4] oxadiazolo [4,3] quinoxalin-1-one(ODQ,0.1 mm)或Ca2 +遗漏可抑制SNAP诱导的增加。重新引入Ca2 +可恢复SNAP效果。 SNAP诱导的DA + 3-MT的增加不受共注入l型Ca2 +通道抑制剂硝苯地平的影响。 NO供体(+/-)-(E)-4-乙基-2-[[(E)-羟基亚氨基] -5-硝基-3-己烯酰胺(NOR-3,1.0 mm)引起短时减少透析液DA + 3-MT。共注入抗坏血酸(0.2 mm)可使NOR-3升高透析液DA + 3-MT。 ODQ预输注抑制NOR-3 +抗坏血酸诱导的DA + 3-MT升高。注入高K +(75 mm)可使透析液DA + 3-MT升高2.5倍。 NOR-3共输注取消了增加。相反,将抗坏血酸(0.2 mm)与NOR-3 +高K +共注入可恢复高K +效应。共注入硝苯地平可抑制高K +诱导的DA + 3-MT增加。这些结果表明,NO / sGC /环状GMP途径的激活可能是外源NO对PC12细胞DA分泌的细胞外Ca2 +依赖性作用的潜在机制。细胞外Ca2 +进入可能通过硝苯地平不敏感通道发生。透析液中的NO效应和DA浓度在很大程度上取决于NO生成的时间和生成NO的细胞外环境。

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