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本文引用的文献

1
Adenosine A2A receptor modulation of juvenile female rat skeletal muscle microvessel permeability.腺苷A2A受体对幼年雌性大鼠骨骼肌微血管通透性的调节作用
Am J Physiol Heart Circ Physiol. 2006 Dec;291(6):H3094-105. doi: 10.1152/ajpheart.00526.2006. Epub 2006 Jun 30.
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Compartmentalized phosphodiesterase-2 activity blunts beta-adrenergic cardiac inotropy via an NO/cGMP-dependent pathway.分隔的磷酸二酯酶-2活性通过NO/cGMP依赖性途径减弱β-肾上腺素能心脏变力性。
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Macromolecule permeability of in situ and excised rodent skeletal muscle arterioles and venules.原位和离体啮齿动物骨骼肌小动脉和小静脉的大分子通透性。
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Differential coronary microvascular exchange responses to adenosine: roles of receptor and microvessel subtypes.冠状动脉微血管对腺苷的差异性交换反应:受体和微血管亚型的作用。
Microcirculation. 2005 Jun;12(4):313-26. doi: 10.1080/10739680590934736.
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Vascular endothelium is critically involved in the hypotensive and hypovolemic actions of atrial natriuretic peptide.血管内皮在心房利钠肽的降压和低血容量作用中起关键作用。
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Sexual dimorphism in the permeability response of coronary microvessels to adenosine.冠状动脉微血管对腺苷通透性反应中的性别差异。
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Opposite effect of cAMP signaling in endothelial barriers of different origin.环磷酸腺苷(cAMP)信号在不同来源内皮屏障中的相反作用。
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Signalling from adenosine receptors to mitogen-activated protein kinases.从腺苷受体到丝裂原活化蛋白激酶的信号传导。
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Fluorescent dyes modify properties of proteins used in microvascular research.荧光染料改变了微血管研究中所用蛋白质的特性。
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冠状动脉小动脉和小静脉微血管交换对运动训练的适应性以及性别在决定通透性反应中的作用。

Adaptation of coronary microvascular exchange in arterioles and venules to exercise training and a role for sex in determining permeability responses.

作者信息

Huxley Virginia H, Wang Jian Jie, Sarelius Ingrid H

机构信息

Department of Medical Pharmacology & Physiology, University of Missouri School of Medicine, Columbia, MO 65212, USA.

出版信息

Am J Physiol Heart Circ Physiol. 2007 Aug;293(2):H1196-205. doi: 10.1152/ajpheart.00069.2007. Epub 2007 Apr 13.

DOI:10.1152/ajpheart.00069.2007
PMID:17434979
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2131720/
Abstract

Studies of physical performance and energy metabolism during and following exercise have shown significant sex-specific musculoskeletal adaptations; less is known of vascular adaptations, particularly with respect to exchange capacity. In response to adenosine (ADO), a metabolite produced during exercise, permeability (P(s)) of coronary arterioles from female pigs changed acutely; the magnitude and direction of the change (Delta P(s)) were determined by training status. In the present study P(s) to albumin was assessed in arterioles (n = 138) and venules (n = 24) isolated from hearts of male (N = 27) and female (N = 59) pigs in the exercise training group (EX). We evaluated the hypothesis that coronary microvessel exchange adapts to endurance exercise training not by altering basal P(s), per se, but by elevating P(s) on exposure to ADO. In contrast, training resulted in a reduction of basal P(s) in all arterioles, and in venules from males, with no change in venules from EX females. Exposure to ADO resulted in the predicted increase in P(s) except for venules from EX males where P(s) was reduced. Delta P(s) responses of arterioles to mediators of adenylyl cyclase (isoproterenol)- and guanylyl cyclase (atrial natriuretic peptide)-signaling pathways were attenuated in EX pigs relative to pigs in the sedentary group. The adaptation of EX arterioles involves an upregulation of a nitric oxide-dependent pathway since nitric oxide synthase inhibition blocks Delta P(s) by ADO. Thus adaptation of microvascular exchange capacity to endurance exercise training not only occurs but also involves multiple mechanisms that differ in arterioles and venules with their relative contribution to net flux being a function of sex.

摘要

对运动期间及运动后身体机能和能量代谢的研究表明,肌肉骨骼存在明显的性别特异性适应;而关于血管适应,尤其是交换能力方面的了解较少。运动过程中会产生一种代谢物——腺苷(ADO),雌性猪冠状动脉小动脉对其反应时,通透性(P(s))会发生急性变化;变化的幅度和方向(ΔP(s))取决于训练状态。在本研究中,对运动训练组(EX)雄性(N = 27)和雌性(N = 59)猪心脏分离出的小动脉(n = 138)和小静脉(n = 24)的白蛋白P(s)进行了评估。我们评估了这样一个假设,即冠状动脉微血管交换适应耐力运动训练,并非通过改变基础P(s)本身,而是通过在接触ADO时提高P(s)来实现。相反,训练导致所有小动脉以及雄性小静脉的基础P(s)降低,而EX组雌性小静脉的基础P(s)没有变化。接触ADO后,除了EX组雄性小静脉的P(s)降低外,其他小静脉的P(s)都如预期那样增加。与久坐组的猪相比,EX组猪的小动脉对腺苷酸环化酶(异丙肾上腺素)和鸟苷酸环化酶(心房利钠肽)信号通路介质的ΔP(s)反应减弱。EX组小动脉的适应涉及一氧化氮依赖性途径的上调,因为一氧化氮合酶抑制会阻断ADO引起的ΔP(s)。因此,微血管交换能力对耐力运动训练的适应不仅会发生,而且涉及多种机制,这些机制在小动脉和小静脉中有所不同,它们对净通量的相对贡献是性别的函数。