首页> 外文期刊>The Journal of Physiology >Alpha-adrenergic and neuropeptide Y Y1 receptor control of collateral circuit conductance: influence of exercise training.
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Alpha-adrenergic and neuropeptide Y Y1 receptor control of collateral circuit conductance: influence of exercise training.

机译:α-肾上腺素能和神经肽Y Y1受体对侧支循环电导的控制:运动训练的影响。

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摘要

This study evaluated the role of alpha-adrenergic receptor- and neuropeptide Y (NPY) Y1 receptor-mediated vasoconstriction in the collateral circuit of the hind limb. Animals were evaluated either the same day (Acute) or 3 weeks following occlusion of the femoral artery; the 3-week animals were in turn limited to cage activity (Sed) or given daily exercise (Trained). Collateral-dependent blood flows (BFs) were measured during exercise with microspheres before and after alpha-receptor inhibition (phentolamine) and then NPY Y1 receptor inhibition (BIBP 3226) at the same running speed. Blood pressures (BPs) were measured above (caudal artery) and below (distal femoral artery) the collateral circuit. Arterial BPs were reduced by alpha-inhibition (50-60 mmHg) to approximately 75 mmHg, but not further by NPY Y1 receptor inhibition. Effective experimental sympatholysis was verified by 50-100% increases (P < 0.001) in conductance of active muscles not affected by femoral occlusion with receptor inhibition. In the absence of receptor inhibition, vascular conductance of the collateral circuit was minimal in the Acute group (0.13 +/- 0.02), increased over time in the Sed group (0.41 +/- 0.03; P < 0.001), and increased further in the Trained group (0.53 +/- 0.03; P < 0.02). Combined receptor inhibition increased collateral circuit conductances (P < 0.005), most in the Acute group (116 +/- 37%; P < 0.02), as compared to the Sed (41 +/- 6.6%; P < 0.001) and Trained (31 +/- 5.6%; P < 0.001) groups. Thus, while the sympathetic influence of the collateral circuit remained in the Sed and Trained animals, it became less influential with time post-occlusion. Collateral conductances were collectively greater (P < 0.01) in the Trained as compared to Sed group, irrespective of the presence or absence of receptor inhibition. Conductances of the active ischaemic calf muscle, with combined receptor inhibition, were suboptimal in the Acute group, but increased in Sed and Trained animals to exceptionally high values (e.g. red fibre section of the gastrocnemius: approximately 7 ml min(-1) (100 g)(-1) mmHg(-1)). Thus, occlusion of the femoral artery promulgated vascular adaptations, even in vessels that are not part of the collateral circuit. The presence of active sympathetic control of the collateral circuit, even with exercise training, raises the potential for reductions in collateral BF below that possible by the structure of the collateral circuit. However, even with release of this sympathetic vasoconstriction, conductance of the collateral circuit was significantly greater with exercise training, probably due to the network of structurally larger collateral vessels.
机译:这项研究评估了α-肾上腺素受体和神经肽Y(NPY)Y1受体介导的血管收缩在后肢侧支循环中的作用。在股动脉闭塞后的同一天(急性)或3周对动物进行评估;然后将3周的动物限制在笼子活动(Sed)或进行日常运动(训练)。在微球运动期间,在相同的运动速度下,在α-受体抑制(酚妥拉明)和NPY Y1受体抑制(BIBP 3226)之前和之后,测量微球运动中的侧支依赖性血流量(BFs)。在侧支回路上方(尾动脉)和下方(股远端动脉)测量血压(BPs)。阿尔法抑制(50-60 mmHg)将动脉BP降低至约75 mmHg,但NPY Y1受体抑制则不会进一步降低。通过不受受体阻塞的股骨闭塞影响的活动肌肉电导增加50-100%(P <0.001)验证了有效的实验交感神经。在没有受体抑制的情况下,急性组的侧支血管电导最小(0.13 +/- 0.02),Sed组的随时间增加(0.41 +/- 0.03; P <0.001),而在Sed组则增加受过训练的小组(0.53 +/- 0.03; P <0.02)。与Sed(41 +/- 6.6%; P <0.001)和受过训练的相比,联合受体抑制可增加侧支循环电导(P <0.005),在急性组中最多(116 +/- 37%; P <0.02) (31 +/- 5.6%; P <0.001)组。因此,尽管在Sed和训练有素的动物中仍存在侧支循环的交感神经影响,但随着闭塞时间的延长,其影响逐渐减弱。与Sed组相比,受训者的侧支传导率总体上更高(P <0.01),而不管是否存在受体抑制作用。在急性组中,活动性缺血性小腿肌肉的电导率受到联合受体抑制,次佳,但在Sed和训练有素的动物中增加至极高的值(例如腓肠肌红色纤维部分:大约7 ml min(-1)(100) g)(-1)mmHg(-1))。因此,即使在不属于侧支回路的血管中,股动脉的阻塞也会使血管适应性改变。即使进行运动训练,对侧支路的主动交感神经控制的存在也增加了将侧支BF降低的可能性,低于侧支路的结构所能达到的水平。然而,即使释放了这种交感性血管收缩,在进行运动训练时,侧支传导率也明显更高,这可能是由于结构较大的侧支血管网络所致。

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