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An analysis of the purinergic component of active muscle vasodilatation obtained by electrical stimulation of the hypothalamus in rabbits.

机译:电刺激兔下丘脑获得的活动性肌肉血管舒张的嘌呤能成分分析。

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摘要

In anaesthetized rabbits, electrical stimulation of the hypothalamus in areas analogous to the defence area in cats produces the 'defence reaction.' This response includes signs of arousal and a large increase in blood flow to skeletal muscle in the hind limb caused by a vasodilatation in the skeletal muscle vasculature. The vasodilatation is a sympathetic response, and it is not dependent upon muscle activity in the hind limb. The muscle vasodilatation is insensitive to alpha-adrenoceptor, beta-adrenoceptor, cholinoceptor and histamine receptor antagonists. Intra-arterial injections of the purinoceptor agonists, adenosine triphosphate (ATP) and adenosine, mimic the vasodilatation produced by electrical stimulation. The P1-purinoceptor blocker, aminophylline, attenuates adenosine-induced vasodilatation, but it does not affect the vasodilatation produced by ATP or hypothalamic stimulation. The P2-purinoceptor blocker, antazoline, attenuates the vasodilatation produced by both ATP and hypothalamic stimulation. Our results suggest that the muscle vasodilatation produced by hypothalamic stimulation is mediated by purinergic nerves which release ATP and act on P2-purinoceptors.
机译:在麻醉的兔子中,下丘脑的电刺激类似于猫的防御区域,会产生“防御反应”。这种反应包括引起唤醒的迹象,以及由于骨骼肌脉管系统的血管舒张引起的后肢骨骼肌血流的大量增加。血管舒张是一种交感反应,它不依赖于后肢的肌肉活动。肌肉血管扩张对α-肾上腺素受体,β-肾上腺素受体,胆碱受体和组胺受体拮抗剂不敏感。嘌呤受体激动剂,三磷酸腺苷(ATP)和腺苷的动脉内注射模拟了电刺激产生的血管舒张。 P1-嘌呤受体阻滞剂氨茶碱可减轻腺苷诱导的血管舒张,但不会影响ATP或下丘脑刺激产生的血管舒张。 P2-嘌呤受体阻滞剂antazoline可减弱ATP和下丘脑刺激产生的血管舒张作用。我们的结果表明,下丘脑刺激产生的肌肉血管舒张由嘌呤能神经介导,嘌呤能神经释放ATP并作用于P2-嘌呤受体。

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