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Impact of Superoxide Dismutase Mimetic AEOL 10150 on the Endothelin System of Fischer 344 Rats

机译:超氧化物歧化酶模拟物AEOL 10150对Fischer 344大鼠内皮素系统的影响

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摘要

Endothelin-1 is a potent vasoconstrictor and mitogenic peptide involved in the regulation of vasomotor tone and maintenance of blood pressure. Oxidative stress activates the endothelin system, and is implicated in pulmonary and cardiovascular diseases including hypertension, congestive heart failure, and atherosclerosis. Superoxide dismutase mimetics designed with the aim of treating diseases that involve reactive oxygen species in their pathophysiology may exert a hypotensive effect, but effects on the endothelin system are unknown. Our objective was to determine the effect of the superoxide dismutase mimetic AEOL 10150 on the basal endothelin system in vivo. Male Fischer-344 rats were injected subcutaneously with 0, 2 or 5 mg/kg body weight of AEOL 10150 in saline. Plasma oxidative stress markers and endothelins (bigET-1, ET-1, ET-2, ET-3) as well as lung and heart endothelinitric oxide system gene expressions were measured using HPLC-Coularray, HPLC-Fluorescence and RT-PCR respectively. AEOL 10150 reduced (p<0.05) the circulating levels of isoprostane (-25%) and 3-nitrotyrosine (-50%) measured in plasma 2h and 24h after treatment, confirming delivery of a physiologically-relevant dose and the potent antioxidant activity of the drug. The reduction in markers of oxidative stress coincided with sustained 24h decrease (p<0.05) of plasma levels of ET-1 (-50%) and ET-3 (-10%). Expression of preproET-1 and endothelin converting enzyme-1 mRNA were not altered significantly in the lungs. However preproET-1 (not significant) and ECE-1 mRNA (p<0.05) were increased (10–25%) in the heart. Changes in the lungs included decrease (p<0.05) of mRNA for the ET-1 clearance receptor ETB and the vasoconstriction-signaling ETA receptor (-30%), and an early surge of inducible nitric oxide synthase expression followed by sustained decrease (-40% after 24 hours). The results indicate that interception of the endogenous physiological flux of reactive nitrogen species and reactive oxygen species in rats impacts the endothelinitric oxide system, supporting a homeostatic relationship between those systems.
机译:内皮素-1是有效的血管收缩剂和促有丝分裂肽,参与调节血管舒缩张力和维持血压。氧化应激会激活内皮素系统,并与肺和心血管疾病有关,包括高血压,充血性心力衰竭和动脉粥样硬化。设计用于治疗在病理生理中涉及活性氧的疾病的超氧化物歧化酶模拟物可能会产生降压作用,但对内皮素系统的作用尚不清楚。我们的目标是确定体内超氧化物歧化酶模拟物AEOL 10150对基础内皮素系统的影响。给雄性Fischer-344大鼠皮下注射0、2或5 mg / kg体重的AEOL 10150盐水。使用HPLC-Coularray,HPLC-荧光和RT-PCR测量血浆氧化应激标志物和内皮素(bigET-1,ET-1,ET-2,ET-3)以及肺和心脏内皮素/一氧化氮系统的基因表达分别。 AEOL 10150降低(p <0.05)在治疗后2h和24h在血浆中测得的异丙肾上腺素(-25%)和3-硝基酪氨酸(-50%)的循环水平,证实了与生理相关的剂量的递送和强效的抗氧化活性毒品。氧化应激标志物的减少与ET-1(-50%)和ET-3(-10%)的血浆水平持续24h降低(p <0.05)相吻合。在肺中,preproET-1和内皮素转化酶-1 mRNA的表达没有明显改变。但是,preproET-1(不显着)和ECE-1 mRNA(p <0.05)在心脏中增加(10–25%)。肺部变化包括ET-1清除受体ETB和血管收缩信号ETA受体mRNA的降低(p <0.05)(-30%),以及诱导型一氧化氮合酶表达的早期激增,然后持续降低(- 24小时后40%)。结果表明,大鼠体内反应性氮和反应性氧物种的内源性生理通量的拦截会影响内皮素/一氧化氮系统,支持这些系统之间的体内平衡。

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