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微血管直径的组织特异性调节:位于神经元和平滑肌的香草酸受体-1的相反功能作用。

Tissue-specific regulation of microvascular diameter: opposite functional roles of neuronal and smooth muscle located vanilloid receptor-1.

作者信息

Kark Tamás, Bagi Zsolt, Lizanecz Erzsébet, Pásztor Eniko T, Erdei Nóra, Czikora Agnes, Papp Zoltán, Edes István, Pórszász Róbert, Tóth Attila

机构信息

Division of Clinical Physiology, Institute of Cardiology, Medical and Health Science Center, University of Debrecen, 22 Moricz Zs krt, 4032, Debrecen, Hungary.

出版信息

Mol Pharmacol. 2008 May;73(5):1405-12. doi: 10.1124/mol.107.043323. Epub 2008 Feb 6.

Abstract

The transient receptor potential type V1 channel (vanilloid receptor 1, TRPV1) is a Ca(2+)-permeable nonspecific cation channel activated by various painful stimuli including ischemia. We hypothesized that TRPV1 is expressed in the arterioles and is involved in the regulation of microvascular tone. We found that TRPV1 stimulation by capsaicin (intra-arterial administration) of the isolated, perfused right hind limb of the rat increased vascular resistance (by 98 +/- 21 mm Hg at 10 mug) in association with decreased skeletal muscle perfusion and elevation of skin perfusion (detected by dual-channel laser Doppler flowmetry). Denervation of the hind limb did not affect capsaicin-evoked changes in vascular resistance and tissue perfusion in the hind limb but reduced the elevation of perfusion in the skin. In isolated, pressurized skeletal (musculus gracilis) muscle arterioles (diameter, 147 +/- 35 mum), capsaicin had biphasic effects: at lower concentrations, capsaicin (up to 10 nM) evoked dilations (maximum, 32 +/- 13%), whereas higher concentrations (0.1-1 muM) elicited substantial constrictions (maximum, 66 +/- 7%). Endothelium removal or inhibition of nitric-oxide synthase abolished capsaicin-induced dilations but did not affect arteriolar constriction. Expression of TRPV1 was detected by reverse transcriptase-polymerase chain reaction in the aorta and in cultured rat aortic vascular smooth muscle cells (A7r5). Immunohistochemistry revealed expression primarily in the smooth muscle layers of the gracilis arteriole. These data demonstrate the functional expression of TRPV1 in vascular smooth muscle cells mediating vasoconstriction of the resistance arteries. Because of the dual effects of TRPV1 stimulation on the arteriolar diameter (dilation in skin, constriction in skeletal muscle), we propose that TRPV1 ligands represent drug candidates for tissue-specific modulation of blood distribution.

摘要

瞬时受体电位V1型通道(香草酸受体1,TRPV1)是一种Ca(2+)通透性非特异性阳离子通道,可被包括缺血在内的各种疼痛刺激激活。我们推测TRPV1在小动脉中表达,并参与微血管张力的调节。我们发现,用辣椒素(动脉内给药)刺激大鼠离体灌注的右后肢,可增加血管阻力(10μg时增加98±21mmHg),同时骨骼肌灌注减少,皮肤灌注增加(通过双通道激光多普勒血流仪检测)。后肢去神经支配并不影响辣椒素引起的后肢血管阻力和组织灌注变化,但可降低皮肤灌注的增加。在离体加压的骨骼肌(股薄肌)小动脉(直径147±35μm)中,辣椒素具有双相作用:在较低浓度下,辣椒素(高达10nM)引起血管舒张(最大舒张32±13%),而较高浓度(0.1-1μM)则引起明显的血管收缩(最大收缩66±7%)。去除内皮或抑制一氧化氮合酶可消除辣椒素诱导的血管舒张,但不影响小动脉收缩。通过逆转录聚合酶链反应在主动脉和培养的大鼠主动脉血管平滑肌细胞(A7r5)中检测到TRPV1的表达。免疫组织化学显示主要在股薄肌小动脉的平滑肌层表达。这些数据证明了TRPV1在介导阻力动脉血管收缩的血管平滑肌细胞中的功能性表达。由于TRPV1刺激对小动脉直径有双重影响(皮肤舒张、骨骼肌收缩),我们提出TRPV1配体代表了用于组织特异性调节血液分布的候选药物。

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