Department of Physiology, 2nd Medical School, Charles University, Prague, Czech Republic.
Respir Physiol Neurobiol. 2013 Feb 1;185(3):547-52. doi: 10.1016/j.resp.2012.11.012. Epub 2012 Nov 24.
Tetrahydrobiopterin (BH4) is an essential cofactor for nitric oxide synthases (NOS). Oxidative stress oxidises BH4 to dihydrobioptein (BH2), resulting in the uncoupling of the two enzymatic domains of NOS and the production of superoxide rather than NO (NOS uncoupling). Oxidative stress is known to be increased in the early stage of chronic hypoxia. This study investigated the participation of NOS uncoupling in the early phase of hypoxia-induced pulmonary hypertension in rats. Rats were exposed to 10% O(2) for 4 days. We investigated the effect of BH4 in vitro on isolated rat lungs and isolated rat peripheral pulmonary blood vessels and in vivo on exhaled NO concentration in exhaled air. BH4 attenuated hypoxic pulmonary vasoconstriction in isolated lungs and its effect was reversed by l-NAME (NOS inhibitor). The main finding of the study is that the effect of BH4 was smaller in rats exposed to 4 days of hypoxia than in normoxic controls. The finding was similar in isolated pulmonary blood vessels. BH4 increased exhaled NO in both normoxic and hypoxic rats. This increase was blunted by l-NIL (specific iNOS inhibitor) and therefore attributable to iNOS. We conclude that BH4 increased NO production in both normoxic and hypoxic rats. The increase was, however, smaller in hypoxic lungs than in controls. We assume that the smaller increase in NO production in hypoxic lungs is due to the decreased BH4/BH2 ratio in chronic hypoxia and NOS uncoupling resulting from this condition.
四氢生物蝶呤(BH4)是一氧化氮合酶(NOS)的必需辅因子。氧化应激将 BH4 氧化为二氢生物蝶呤(BH2),导致 NOS 的两个酶结构域解偶联,产生超氧化物而不是 NO(NOS 解偶联)。已知氧化应激在慢性缺氧的早期阶段增加。本研究调查了 NOS 解偶联在大鼠慢性低氧诱导肺动脉高压早期阶段的参与情况。大鼠暴露于 10%O2 中 4 天。我们研究了 BH4 在体外对分离的大鼠肺和分离的大鼠外周肺血管的影响,以及在体内对呼出气中 NO 浓度的影响。BH4 减轻了离体肺中的低氧性肺血管收缩,其作用被 l-NAME(NOS 抑制剂)逆转。该研究的主要发现是,与正常氧对照组相比,暴露于 4 天低氧的大鼠中 BH4 的作用较小。在分离的肺血管中也发现了类似的结果。BH4 增加了正常氧和低氧大鼠的呼出气中 NO。这种增加被 l-NIL(特异性 iNOS 抑制剂)削弱,因此归因于 iNOS。我们得出结论,BH4 增加了正常氧和低氧大鼠的 NO 产生。然而,在低氧肺中增加的幅度小于对照组。我们假设,低氧肺中 NO 产生的增加较小是由于慢性缺氧中 BH4/BH2 比值降低以及由此引起的 NOS 解偶联所致。