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Analysis of regional hemodynamic regulation in response to scald injury.

机译:分析烫伤后的局部血流动力学调节。

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摘要

Ultrasonic probes were placed around dog femoral arteries to record blood flow. Hind paw scalding with boiling water (5 s) caused a marked increase in ipsilateral femoral blood flow that persisted for the 2-h observation period. Contralateral femoral blood flow and systemic and pulmonary vascular resistances were unchanged. Compared to scald only animals, methysergide pretreatment diminished and shortened the femoral vasodilator response to scald (109 +/- 14 vs 243 +/- 27 ml/min at 5 min; 59 +/- 14 vs 191 +/- 31 ml/min at 2 h). Pretreatment with ritanserin, BW A1433U83, atropine, ICI 118551, diphenhydramine, ranitidine, meclofenamate, L-nitro-arginine methyl ester, 3-amino-1,2,4-triazine, and U 37883A had no effect on the increased femoral blood flow response to scald, suggesting this vasodilator response is not dependent upon activation of serotonergic2, adenosineA1, muscarinic, beta 2-adrenergic, histaminergic1 or histaminergic2 receptors, on cyclooxygenase products, endothelium-derived relaxing factor derived from nitric oxide (NO) synthase III, NO derived from NO synthase II, or KATP channels, respectively. Methysergide given after burn immediately reduced the augmented femoral blood flow to preburn levels, suggesting the vasodilator response to scald is mediated through continual activation of local serotonergic1-like receptors, which may be target site(s) for therapeutic interventions to influence burn-induced hemodynamic alterations.
机译:将超声波探头放置在犬股动脉周围以记录血流量。后肢用沸水烫伤(5 s)导致同侧股骨血流量显着增加,持续2小时观察期。对侧股动脉血流以及全身和肺血管阻力不变。与仅烫伤的动物相比,美塞麦肽预处理减少并缩短了对烫伤的股血管扩张剂的反应(5分钟时109 +/- 14 vs 243 +/- 27 ml / min; 59 +/- 14 vs 191 +/- 31 ml / min 2小时)。用利坦色林,BW A1433U83,阿托品,ICI 118551,苯海拉明,雷尼替丁,甲氯芬那酸酯,L-硝基-精氨酸甲酯,3-氨基-1,2,4-三嗪和U 37883A进行预处理对股血流量增加没有影响对烫伤的反应,表明该血管扩张剂反应不依赖于环氧化酶产物,源自一氧化氮​​(NO)合酶III的内皮源性舒张因子的血清素,肾上腺素A,毒蕈碱,β2-肾上腺素,组胺能1或组胺能2受体的活化。分别来自NO合酶II或KATP通道。烧伤后给予美塞麦肽可立即将股动脉血流量减少至烧伤前水平,表明血管舒张剂对烫伤的反应是通过持续激活局部血清素能1样受体介导的,该受体可能是治疗干预措施的目标部位,可影响烧伤诱发的血流动力学变更。

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