首页> 外文期刊>The Journal of Physiology >ATP: a vasoactive signal in the pericyte-containing microvasculature of the rat retina.
【24h】

ATP: a vasoactive signal in the pericyte-containing microvasculature of the rat retina.

机译:ATP:大鼠视网膜中含有周细胞的微脉管系统中的血管活性信号。

获取原文
获取原文并翻译 | 示例
           

摘要

In this study we tested the hypothesis that extracellular ATP regulates the function of the pericyte-containing retinal microvessels. Pericytes, which are more numerous in the retina than in any other tissue, are abluminally located cells that may adjust capillary perfusion by contracting and relaxing. At present, knowledge of the vasoactive molecules that regulate pericyte function is limited. Here, we focused on the actions of extracellular ATP because this nucleotide is a putative glial-to-vascular signal, as well as being a substance released by activated platelets and injured cells. In microvessels freshly isolated from the adult rat retina, we monitored ionic currents via perforated-patch pipettes, measured intracellular calcium levels with the use of fura-2, and visualized microvascular contractions with the aid of time-lapse photography. We found that ATP induced depolarizing changes in the ionic currents, increased calcium levels and caused pericytes to contract. P2X7 receptors and UTP-activated receptors mediated these effects. Consistent with ATP serving as a vasoconstrictor for the pericyte-containing microvasculature of the retina, the microvascular lumen narrowed when an adjacent pericyte contracted. In addition, the sustained activation of P2X7 receptors inhibited cell-to-cell electrotonic transmission within the microvascular networks. Thus, ATP not only affects the contractility of individual pericytes, but also appears to regulate the spatial and temporal dynamics of the vasomotor response.
机译:在这项研究中,我们测试了细胞外ATP调节含周细胞的视网膜微血管功能的假设。视网膜中的周细胞比其他任何组织中都多,是位于腔内的细胞,可以通过收缩和松弛来调节毛细血管灌注。目前,调节周细胞功能的血管活性分子的知识是有限的。在这里,我们集中于细胞外ATP的作用,因为该核苷酸是假定的神经胶质至血管信号,并且是活化的血小板和受损细胞释放的物质。在从成年大鼠视网膜新鲜分离的微血管中,我们通过穿孔移液管监测离子电流,使用fura-2测量细胞内钙水平,并借助延时摄影技术观察微血管收缩。我们发现ATP诱导了离子电流的去极化变化,增加了钙水平并导致周细胞收缩。 P2X7受体和UTP激活的受体介导了这些作用。与ATP充当视网膜的含周细胞微脉管系统的血管收缩剂一致,当相邻的周细胞收缩时,微血管腔变窄。此外,P2X7受体的持续激活抑制了微血管网络内的细胞间电渗传递。因此,ATP不仅影响单个周细胞的收缩性,而且似乎调节血管舒缩反应的时空动态。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号