首页> 美国卫生研究院文献>The Journal of Physiology >Chronic decentralization potentiates neurovascular transmission in the isolated rat tail artery mimicking the effects of spinal transection
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Chronic decentralization potentiates neurovascular transmission in the isolated rat tail artery mimicking the effects of spinal transection

机译:慢性分散会增强离体大鼠尾动脉的神经血管传递从而模拟脊髓横切的影响

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摘要

Spinal cord transection produces a marked increase in the response of the isolated rat tail artery to sympathetic nerve stimulation, possibly as a result of a decrease in ongoing sympathetic activity. We have tested the effects of removing ongoing nerve activity on neurovascular transmission by cutting the preganglionic input to postganglionic neurones supplying the tail artery (decentralization). Isometric contractions to nerve stimulation were compared between decentralized arteries and those from age-matched and sham-operated controls. Nerve-evoked responses of decentralized arteries were much larger than those of control arteries at 2 and 7 weeks post operatively. The extent of blockade of nerve-evoked contraction by α-adrenoceptor antagonists prazosin (10 nm) or idazoxan (0.1 μm) was reduced. Decentralized arteries were transiently supersensitive to the α1-adrenoceptor agonist phenylephrine and the α2-adrenoceptor agonist clonidine; the unchanged sensitivity to methoxamine and phenylephrine after 2 weeks indicated no effect on the neuronal noradrenaline uptake transporter. Decentralized arteries were hypersensitive to α,β methylene-ATP, but the P2-purinoceptor antagonist suramin (0.1 mm) did not reduce nerve-evoked contractions. Enlarged responses to 60 mm K+ after both 2 and 7 weeks were correlated with the response of the arteries to nerve stimulation, suggesting that increased postjunctional reactivity contributes to the enhanced contraction. Comparison between data from decentralized arteries and our previous data from spinalized animals showed that the two lesions similarly potentiate nerve-evoked contractions and have similar but not identical postjunctional effects. The enhanced vascular responses following a reduction in tonic nerve activity may contribute to the hypertensive episodes of autonomic dysreflexia in spinally injured patients.
机译:脊髓横断产生离体大鼠尾动脉对交感神经刺激的反应明显增加,可能是由于进行中的交感神经活动减少所致。我们已经测试了通过切断向供应尾动脉的神经节后神经元的神经节前输入(去中心化)来消除正在进行的神经活动对神经血管传输的影响。比较了分散的动脉与年龄匹配的假手术对照组的等距收缩神经刺激情况。术后2周和7周,分散动脉的神经诱发反应比对照动脉的反应大得多。 α-肾上腺素受体拮抗剂哌唑嗪(10 nm)或伊达唑烷(0.1μm)对神经诱发的收缩的阻滞程度有所降低。分散的动脉对α1-肾上腺素受体激动剂去氧肾上腺素和α2-肾上腺素受体激动剂可乐定暂时超敏感。 2周后对甲氧胺和去氧肾上腺素的敏感性保持不变,表明对神经元去甲肾上腺素摄取转运蛋白没有影响。分散的动脉对α,β亚甲基-ATP过敏,但P2-嘌呤受体拮抗剂苏拉明(0.1 mm)并未减少神经诱发的收缩。在第2周和第7周后,对60 mm K + 的增强反应与动脉对神经刺激的反应相关,表明结节后反应性增加有助于收缩增强。比较来自分散动脉的数据和我们先前来自脊柱动物的数据,结果表明,这两个病变类似地增强了神经诱发的收缩,并且具有相似但不相同的连接后效果。紧张性神经活动减少后增强的血管反应可能导致脊髓损伤患者的自主神经反射异常的高血压发作。

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