首页> 外文期刊>The Journal of Experimental Biology >Hydrogen sulfide mediates hypoxia-induced relaxation of trout urinary bladder smooth muscle
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Hydrogen sulfide mediates hypoxia-induced relaxation of trout urinary bladder smooth muscle

机译:硫化氢介导低氧诱导的鳟鱼膀胱平滑肌松弛

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摘要

Hydrogen sulfide (H2S) is a recently identified gasotransmitter that may mediate hypoxic responses in vascular smooth muscle. H2S also appears to be a signaling molecule in mammalian non-vascular smooth muscle, but its existence and function in non-mammalian non-vascular smooth muscle have not been examined. In the present study we examined H2S production and its physiological effects in urinary bladder from steelhead and rainbow trout (Oncorhynchus mykiss) and evaluated the relationship between H2S and hypoxia. H2S was produced by trout bladders, and its production was sensitive to inhibitors of cystathionine beta-synthase and cystathionine gamma-lyase. H2S produced a dose-dependent relaxation in unstimulated and carbachol pre-contracted bladders and inhibited spontaneous contractions. Bladders pre-contracted with 80 mmol l(-1) KCl were less sensitive to H2S than bladders contracted with either 80 mmol l(-1) KC2H3O2 (KAc) or carbachol, suggesting that some of the H2S effects are mediated through an ion channel. However, H2S relaxation of bladders was not affected by the potassium channel inhibitors, apamin, charybdotoxin, 4-aminopyridine, and glybenclamide, or by chloride channel/exchange inhibitors 4,4'-Diisothiocyanatostilbene-2,2'-disulfonic acid disodium salt, tamoxifen and glybenclamide, or by the presence or absence of extracellular HCO3-. Inhibitors of neuronal mechanisms, tetrodotoxin, strychnine and N-vanillylnonanamide were likewise ineffective. Hypoxia (aeration with N2) also relaxed bladders, was competitive with H2S for relaxation, and it was equally sensitive to KCl, and unaffected by neuronal blockade or the presence of extracellular HCO3-. Inhibitors of H2S synthesis also inhibited hypoxic relaxation. These experiments suggest that H2S is a phylogenetically ancient gasotransmitter in non-mammalian non-vascular smooth muscle and that it serves as an oxygen sensor/transducer, mediating the effects of hypoxia.
机译:硫化氢(H2S)是最近发现的一种气体递质,可以介导血管平滑肌的低氧反应。 H2S似乎也是哺乳动物非血管平滑肌中的信号分子,但尚未检查其在非哺乳动物非血管平滑肌中的存在和功能。在本研究中,我们检查了钢头和虹鳟鱼(Oncorhynchus mykiss)在膀胱中产生的H2S及其生理作用,并评估了H2S与缺氧之间的关系。 H2S是由鳟鱼膀胱产生的,其产生对胱硫醚β-合酶和胱硫醚γ-裂合酶的抑制剂敏感。 H2S在未刺激的和卡巴胆碱预收缩的膀胱中产生剂量依赖性的舒张作用,并抑制了自发性收缩。与用80 mmol l(-1)KC2H3O2(KAc)或卡巴胆碱收缩的膀胱相比,用80 mmol l(-1)KCl预收缩的膀胱对H2S的敏感性较低,这表明某些H2S效应是通过离子通道介导的。但是,膀胱的H2S松弛不受钾通道抑制剂,阿帕明,甲藻毒素,4-氨基吡啶和格列苯脲的影响,也不受氯通道/交换抑制剂4,4'-Diisothiocyanatostilbene-2,2'-二磺酸二钠盐的影响,他莫昔芬和格列本脲,或是否存在细胞外HCO3-。神经元机制的抑制剂,河豚毒素,士的宁和N-香草基壬二酰胺同样无效。缺氧(用N2充气)也使膀胱松弛,与H2S竞争松弛,并且对KCl同样敏感,不受神经元阻滞或细胞外HCO3-的影响。 H2S合成抑制剂也抑制了缺氧松弛。这些实验表明,H2S是非哺乳动物非血管平滑肌中的一种系统发育的古老气体递质,可作为氧气传感器/传感器,介导缺氧的影响。

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