Suppr超能文献

交感神经释放嘌呤核苷酸抑制黏膜下小动脉神经血管舒张通路。

Presynaptic inhibition of neural vasodilator pathways to submucosal arterioles by release of purines from sympathetic nerves.

机构信息

Department of Physiology and Medicine, Queen's University, Kingston, Ontario, Canada.

出版信息

Am J Physiol Gastrointest Liver Physiol. 2010 May;298(5):G700-5. doi: 10.1152/ajpgi.00291.2009. Epub 2010 Feb 25.

Abstract

Capsaicin-sensitive extrinsic sensory nerves and submucosal vasodilator neurons provide important vasodilator input to submucosal arterioles, but relatively little is known about the signaling between these populations and the sympathetic vasoconstrictor innervation. This study examined whether release of sympathetic purines can modulate dilator nerves. In vitro submucosal preparations from guinea pig ileum were modified to leave the parent mesenteric artery intact so that perivascular sympathetic and extrinsic afferent nerves could be activated by a bipolar stimulating electrode placed on the parent artery, and submucosal vasodilator neurons were activated using focal electrodes placed on submucosal ganglia. The outside diameter of submucosal arterioles was monitored using videomicroscopy, and dilator responses were examined after preconstricting vessels 80-95% with prostaglandin F(2alpha) (400 nM). Mesenteric nerve stimulation evoked a frequency-dependent dilation, with suramin (100 microM) present throughout to inhibit P(2X) receptor-mediated vasoconstrictions. In the presence of guanethidine (10 microM) to inhibit sympathetic purine release, superfusion of ATP (200 nM-6 microM) caused a concentration-dependent inhibition of nerve-evoked dilations. Vasodilations to substance P (10 nM) were not inhibited by ATP in the presence of guanethidine, implicating a presynaptic effect of ATP on neurotransmitter release. The inhibitory effect of ATP was blocked by the adenosine receptor antagonist 8-phenyltheophylline (8-PT; 10 microM). In addition, 8-PT increased the amplitude of nerve-evoked dilations, suggesting a tonic inhibitory effect of adenosine receptors on vasodilator release. Dilations evoked by electrical stimulation of submucosal ganglia were also inhibited almost 50% by ATP (2 microM) and its nonhydrolyzable analog, alpha,beta-methylene-ATP (10 microM). These data suggest that sympathetic varicosities release ATP or a related purine that can act at presynaptic adenosine receptors on extrinsic sensory and submucosal vasodilator neurons to inhibit neurotransmitter release.

摘要

辣椒素敏感的外感受性感觉神经和黏膜下血管扩张神经元向黏膜下小动脉提供重要的血管扩张输入,但对于这些群体与交感神经血管收缩神经支配之间的信号传递相对知之甚少。本研究检查了交感嘌呤的释放是否可以调节扩张神经。从小肠豚鼠的黏膜下制备物中修改了体外模型,使母体肠系膜动脉保持完整,以便通过放置在母体动脉上的双极刺激电极激活血管周围交感神经和外感受传入神经,并使用放置在黏膜下神经节上的聚焦电极激活黏膜下血管扩张神经元。使用视频显微镜监测黏膜下小动脉的外径,并在使用前列腺素 F(2alpha) (400 nM) 将血管预收缩 80-95%后检查扩张反应。肠系膜神经刺激引起频率依赖性扩张,整个过程中存在苏拉明(100 microM)以抑制 P(2X)受体介导的血管收缩。在 10 microM 胍乙啶存在下抑制交感嘌呤释放时,200 nM-6 microM 的 ATP 超滤液引起神经诱导扩张的浓度依赖性抑制。在胍乙啶存在下,ATP 对物质 P(10 nM)引起的血管舒张没有抑制作用,暗示 ATP 对神经递质释放具有突触前作用。ATP 的抑制作用被腺苷受体拮抗剂 8-苯基茶碱(8-PT;10 microM)阻断。此外,8-PT 增加了神经诱导扩张的幅度,表明腺苷受体对血管舒张释放具有紧张性抑制作用。电刺激黏膜下神经节引起的扩张也被 ATP(2 microM)及其非水解类似物 α,β-亚甲基-ATP(10 microM)抑制近 50%。这些数据表明,交感神经轴突释放 ATP 或相关嘌呤,可作用于外感受性感觉和黏膜下血管扩张神经元的突触前腺苷受体,抑制神经递质释放。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验