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首页> 外文期刊>American Journal of Physiology >Vasomotor responses in MnSOD-deficient mice.
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Vasomotor responses in MnSOD-deficient mice.

机译:MnSOD缺陷小鼠的血管舒缩反应。

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MnSOD is the only mammalian isoform of SOD that is necessary for life. MnSOD(-/-) mice die soon after birth, and MnSOD(+/-) mice are more susceptible to oxidative stress than wild-type (WT) mice. In this study, we examined vasomotor function responses in aortas of MnSOD(+/-) mice under normal conditions and during oxidative stress. Under normal conditions, contractions to serotonin (5-HT) and prostaglandin F2alpha (PGF2alpha), relaxation to ACh, and superoxide levels were similar in aortas of WT and MnSOD(+/-) mice. The mitochondrial inhibitor antimycin A reduced contraction to PGF2alpha and impaired relaxation to ACh to a similar extent in aortas of WT and MnSOD(+/-) mice. The Cu/ZnSOD and extracellular SOD inhibitor diethyldithiocarbamate (DDC) paradoxically enhanced contraction to 5-HT and superoxide more in aortas of WT mice than in MnSOD(+/-) mice. DDC impaired relaxation to ACh and reduced total SOD activity similarly in aortas of both genotypes. Tiron, a scavenger of superoxide, normalized contraction to 5-HT, relaxation to ACh, and superoxide levels in DDC-treated aortas of WT and MnSOD(+/-) mice. Hypoxia, which reportedly increases superoxide, reduced contractions to 5-HT and PGF2alpha similarly in aortas of WT and MnSOD(+/-) mice. The vasomotor response to acute hypoxia was similar in both genotypes. In summary, under normal conditions and during acute oxidative stress, vasomotor function is similar in WT and MnSOD(+/-) mice. We speculate that decreased mitochondrial superoxide production may preserve nitric oxide bioavailability during oxidative stress.
机译:MnSOD是生命必需的唯一SOD哺乳动物同种型。 MnSOD(-/-)小鼠出生后不久就死亡,而MnSOD(+/-)小鼠比野生型(WT)小鼠更容易受到氧化应激。在这项研究中,我们检查了正常条件下和氧化应激期间MnSOD(+/-)小鼠主动脉的血管舒缩功能反应。在正常情况下,WT和MnSOD(+/-)小鼠的主动脉收缩至5-羟色胺(5-HT)和前列腺素F2alpha(PGF2alpha),松弛至ACh和超氧化物水平相似。在WT和MnSOD(+/-)小鼠的主动脉中,线粒体抑制剂抗霉素A减少了对PGF2α的收缩,并减弱了对ACh的松弛。 Cu / ZnSOD和细胞外SOD抑制剂二乙基二硫代氨基甲酸酯(DDC)与MnSOD(+/-)小鼠相比,WT小鼠主动脉中对5-HT和超氧化物的收缩更多。在两种基因型的主动脉中,DDC都会损害ACh的松弛并降低总SOD活性。 Tiron是超氧化物的清除剂,在WT和MnSOD(+/-)小鼠的DDC处理的主动脉中,其对5-HT的收缩收缩,对AHT的松弛,对ACh的松弛以及超氧化物的水平。缺氧,据报道增加超氧化物,减少收缩5-HT和PGF2alpha WT和MnSOD(+/-)小鼠的主动脉类似。两种基因型对急性缺氧的血管舒缩反应相似。总之,在正常条件下和急性氧化应激过程中,WT和MnSOD(+/-)小鼠的血管舒缩功能相似。我们推测线粒体超氧化物产生的减少可能在氧化应激期间保留一氧化氮的生物利用度。

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