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Superoxide dismutase restores eNOS expression and function in resistance pulmonary arteries from neonatal lambs with persistent pulmonary hypertension

机译:超氧化物歧化酶恢复患有持续性肺动脉高压的新生羔羊的抗性肺动脉中的eNOS表达和功能

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摘要

Endothelial nitric oxide (NO) synthase (eNOS) expression and activity are decreased in fetal lambs with persistent pulmonary hypertension (PPHN). We sought to determine the impact of mechanical ventilation with O2 with or without inhaled NO (iNO) or recombinant human SOD (rhSOD) on eNOS in the ductal ligation model of PPHN. PPHN lambs and age-matched controls were ventilated with 100% O2 for 24 h alone or combined with 20 ppm iNO continuously or a single dose of rhSOD (5 mg/kg) given intratracheally at delivery. In 1-day spontaneously breathing lambs, eNOS expression in resistance pulmonary arteries increased relative to fetal levels. eNOS expression increased in control lambs ventilated with 100% O2, but not in PPHN lambs. Addition of iNO or rhSOD increased eNOS expression and decreased generation of reactive oxygen species (ROS) in PPHN lambs relative to those ventilated with 100% O2 alone. However, only rhSOD restored eNOS function, increased tetrahydrobiopterin (BH4), a critical cofactor for eNOS function, and restored GTP cyclohydrolase I expression in isolated vessels and lungs from PPHN lambs. These data suggest that ventilation of PPHN lambs with 100% O2 increases ROS production, blunts postnatal increases in eNOS expression, and decreases available BH4 in PPHN lambs. Although the addition of iNO or rhSOD diminished ROS production and increased eNOS expression, only rhSOD improved eNOS function and levels of available BH4. Thus therapies designed to decrease oxidative stress and restore eNOS coupling, such as rhSOD, may prove useful in the treatment of PPHN in newborn infants.
机译:持续性肺动脉高压(PPHN)的胎儿羔羊的内皮一氧化氮(NO)合酶(eNOS)表达和活性降低。我们试图确定PPHN导管结扎模型中有或没有吸入NO(iNO)或重组人SOD(rhSOD)的O2机械通气对eNOS的影响。 PPHN羔羊和与年龄匹配的对照单独用100%O2通风,或与20 ppm iNO连续结合或在分娩时气管内给予单剂量rhSOD(5 mg / kg)通风。在自发呼吸1天的羔羊中,耐药肺动脉中eNOS的表达相对于胎儿水平增加。在通气量为100%O2的对照羔羊中,eNOS表达增加,而在PPHN羔羊中则没有。相对于仅用100%O2通风的羊羔,添加iNO或rhSOD可以增加PPHN羊羔中eNOS的表达,减少活性氧物质(ROS)的产生。但是,只有rhSOD可以恢复eNOS功能,增加四氢生物蝶呤(BH4)(eNOS功能的关键辅助因子)并恢复PPHN羔羊分离的血管和肺中GTP环水解酶I的表达。这些数据表明,通气量为100%O2的PPHN羔羊会增加ROS的产生,使出生后eNOS表达的增加变钝,并降低PPHN羔羊的有效BH4。尽管添加iNO或rhSOD可以减少ROS的产生并增加eNOS的表达,但只有rhSOD可以改善eNOS的功能和可用BH4的水平。因此,旨在降低氧化应激并恢复eNOS偶联的疗法,例如rhSOD,可能被证明可用于治疗新生儿PPHN。

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