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大鼠脑血管中的血管活性肠肽受体:一项放射自显影研究。

Vasoactive intestinal polypeptide receptors in rat cerebral vessels: an autoradiographic study.

作者信息

Amenta F, Cavalotti C, De Michele M, De Vincentis G, Rossodivita A, Rossodivita I

机构信息

Dipartimento di Sanità Pubblica e Biologia Cellulare, Università Tor Vergata, Roma, Italy.

出版信息

J Auton Pharmacol. 1991 Oct;11(5):285-93. doi: 10.1111/j.1474-8673.1991.tb00252.x.

Abstract
  1. Localization and pharmacological properties of the vasoactive intestinal polypeptide (VIP) receptors in rat circle of Willis arteries and in the arteries of pial-arachnoid membrane were studied using light microscope autoradiography combined with radioreceptor binding techniques. 2. [125I]-VIP was specifically bound to sections of rat cerebral arteries with a dissociation constant value of 0.5 nM and a binding site density of 80 fmol mg protein-1. Radioreceptor binding experiments revealed that the binding characteristics of [125I]-VIP were consistent with the labelling of specific VIP receptors. The rank order of potency of various substances tested to inhibit [125I]-VIP binding was the following: VIP greater than peptide histidine methionine greater than secretin greater than glucagon. 3. Light microscope autoradiography revealed the localization of [125I]-VIP binding sites in the medial layer of circle of Willis and pial arteries. Quantitative determination of [125I]-VIP binding site density in the different circle of Willis arteries demonstrated a higher accumulation of silver grains in the anterior than in the posterior cerebral arteries. Pial arteries are richer in VIP receptor sites than circle of Willis arteries. 4. These results suggest that the physiological neurogenic vasodilation elicited by VIP on cerebral arteries is mediated by the interaction with specific receptor sites located primarily within cerebral vessels structures involved in the control of cerebrovascular resistances.
摘要
  1. 采用光学显微镜放射自显影结合放射受体结合技术,研究了大鼠 Willis 环动脉和软脑膜-蛛网膜动脉中血管活性肠肽(VIP)受体的定位及药理学特性。2. [125I]-VIP 特异性结合于大鼠脑动脉切片,解离常数值为 0.5 nM,结合位点密度为 80 fmol mg 蛋白-1。放射受体结合实验表明,[125I]-VIP 的结合特性与特异性 VIP 受体的标记一致。所测试的各种物质抑制[125I]-VIP 结合的效力顺序如下:VIP>组氨酸甲硫氨酸肽>促胰液素>胰高血糖素。3. 光学显微镜放射自显影显示[125I]-VIP 结合位点位于 Willis 环和软脑膜动脉的中层。对 Willis 环不同动脉中[125I]-VIP 结合位点密度的定量测定表明,大脑前动脉中银粒的积累高于大脑后动脉。软脑膜动脉的 VIP 受体位点比 Willis 环动脉丰富。4. 这些结果表明,VIP 引起的脑动脉生理性神经源性血管舒张是通过与主要位于参与脑血管阻力控制的脑血管结构内的特异性受体位点相互作用介导的。

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