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环氧合酶 4 受体在诱发模拟外周动脉疾病大鼠运动升压反射中发挥作用。

Endoperoxide 4 receptors play a role in evoking the exercise pressor reflex in rats with simulated peripheral artery disease.

机构信息

Heart and Vascular Institute and Department of Anesthesiology, Penn State College of Medicine, Hershey, PA 17033, USA.

出版信息

J Physiol. 2013 Jun 1;591(11):2949-62. doi: 10.1113/jphysiol.2012.247973. Epub 2013 Apr 8.

Abstract

Ligating the femoral artery for 72 h in decerebrated rats exaggerates the exercise pressor reflex. The sensory arm of this reflex is comprised of group III and IV afferents, which can be either sensitized or stimulated by PGE2. In vitro studies showed that endoperoxide (EP) 3 and 4 receptors were responsible for the PGE2-induced sensitization of rat dorsal root ganglion cells. This in vitro finding prompted us to test the hypothesis that blockade of EP3 and/or EP4 receptors attenuated the exaggerated exercise pressor reflex in rats with ligated femoral arteries. We measured the cardiovascular responses to static hindlimb contraction or tendon stretch before and after femoral arterial injection of L798106 (an EP3 antagonist) or L161982 (an EP4 antagonist). The pressor and cardioaccelerator responses to either contraction or tendon stretch were not attenuated by L798106 in either the ligated or freely perfused rats. Likewise in five rats whose hindlimb muscles were freely perfused, the pressor and cardioaccelerator responses to either contraction or tendon stretch were not attenuated by L161982. In the six ligated rats, however, the pressor response to contraction was attenuated by L161982, averaging 37 ± 3 mmHg before, 18 ± 2 mmHg afterward (P < 0.05). Western blotting analysis revealed that ligation of the femoral artery for 72 h increased the EP4 receptor protein in the L4 and L5 dorsal root ganglia over their freely perfused counterparts by 24% (P < 0.05). We conclude that EP4 receptors, but not EP3 receptors, play an important role in the exaggerated exercise pressor reflex found in rats with ligated femoral arteries.

摘要

在去大脑大鼠中结扎股动脉 72 小时会夸大运动性升压反射。该反射的感觉臂由 III 类和 IV 类传入纤维组成,它们可被 PGE2 致敏或刺激。体外研究表明,环氧合酶(EP)3 和 4 受体负责 PGE2 诱导的大鼠背根神经节细胞致敏。这一体外发现促使我们检验以下假说,即阻断 EP3 和/或 EP4 受体可减弱结扎股动脉大鼠中夸大的运动性升压反射。我们在股动脉注射 L798106(EP3 拮抗剂)或 L161982(EP4 拮抗剂)前后,测量了心血管对静态后肢收缩或肌腱拉伸的反应。在结扎或自由灌注的大鼠中,L798106 并未减弱收缩或肌腱拉伸引起的升压和心加速反应。同样,在五只后肢肌肉自由灌注的大鼠中,L161982 也没有减弱收缩或肌腱拉伸引起的升压和心加速反应。然而,在六只结扎大鼠中,L161982 减弱了收缩引起的升压反应,平均收缩前为 37 ± 3mmHg,收缩后为 18 ± 2mmHg(P < 0.05)。Western blot 分析显示,股动脉结扎 72 小时增加了 L4 和 L5 背根神经节中 EP4 受体蛋白,与自由灌注的对应物相比增加了 24%(P < 0.05)。我们得出结论,EP4 受体而不是 EP3 受体在结扎股动脉大鼠中夸大的运动性升压反射中起重要作用。

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