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首页> 外文期刊>Life sciences >NOREPINEPHRINE RELEASE DURING VASOCONSTRICTION INDUCED BY CROSS-LINKED HEMOGLOBIN
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NOREPINEPHRINE RELEASE DURING VASOCONSTRICTION INDUCED BY CROSS-LINKED HEMOGLOBIN

机译:交联血红蛋白引起的血管收缩过程中去甲肾上腺素的释放

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摘要

The presser effect of hemoglobin-based blood substitutes is due partly to their capacity to scavenge nitric oxide (NO), a potent vasodilator. NO also appears to modulate the release of norepinephrine (NE) from sympathetic nerve endings in some blood vessels. Thus studies were designed to determine if contraction occurring in response to alpha alpha-cross-linked hemoglobin (XL-Hb) is due in part to increased exit of NE from vascular nerve endings. Helical strips of canine femoral artery were superfused in vitro with Krebs-Ringer solution and, for each strip, the overflow of NE into the superfusate as well as contractile responses were measured concurrently during basal conditions, during nerve stimulation and during tyramine-evoked release of NE. XL-Hb (10 mu M) contracted unstimulated strips without affecting NE overflow. NE overflow also was unchanged by NG-monomethyl-L-arginine (L-NMMA; 300 mu M), an inhibitor of NO synthesis; by sodium nitroprusside (SNP; 1 mu M) an NO donor; by a combination of XL-Hb and L-NMMA; or of XL-Hb and SNP. These treatments contracted the strips to the same degree as did XL-Hb alone, except for SNP, which induced relaxation. Transmural stimulation of the strips at 2 and 10 Hz induced NE overflow and contraction, neither of which was affected by any treatment except SNP which significantly (P < 0.05) increased NE overflow while inhibiting contraction. In other experiments, XL-Hb augmented contractions induced by tyramine (10 mu M) although the resulting NE release was unaffected. These results suggest that, in the femoral artery, contractions induced by XL-Hb are not due to increased efflux of NE from vascular nerve endings but are consistent with inhibition of the the actions of NO. [References: 26]
机译:基于血红蛋白的血液替代品的升压作用部分归因于它们清除一氧化氮(NO)(一种有效的血管扩张剂)的能力。 NO也似乎可以调节一些血管中交感神经末梢去甲肾上腺素(NE)的释放。因此,设计了研究来确定响应α-α-交联的血红蛋白(XL-Hb)发生的收缩是否部分归因于NE从血管神经末梢的排出增加。用克雷布斯-林格(Krebs-Ringer)溶液体外融合犬股动脉螺旋条,对于每条条带,在基础条件,神经刺激和酪胺诱发的松解过程中同时测量NE向超融合液的溢出以及收缩反应NE。 XL-Hb(10μM)收缩了未刺激的条带,而不会影响NE溢出。 NE溢出也被一氧化氮合成抑制剂NG-单甲基-L-精氨酸(L-NMMA; 300μM)所改变。由硝普钠(SNP; 1μM)作为NO供体;通过XL-Hb和L-NMMA的组合;或XL-Hb和SNP。这些处理使条带收缩到与单独的XL-Hb相同的程度,除了SNP会引起松弛。在2和10 Hz处,经条带的透壁刺激可诱发NE溢流和收缩,除SNP显着(P <0.05)增加NE溢流而抑制收缩外,其余均未受任何治疗的影响。在其他实验中,尽管最终的NE释放不受影响,但XL-Hb会增加酪胺(10μM)引起的收缩。这些结果表明,在股动脉中,XL-Hb引起的收缩不是由于NE从血管神经末梢的流出增加,而是与NO的抑制作用相一致。 [参考:26]

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