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首页> 外文期刊>American Journal of Physiology >Endothelial and smooth muscle cell conduction in arterioles controlling blood flow.
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Endothelial and smooth muscle cell conduction in arterioles controlling blood flow.

机译:小动脉中的内皮和平滑肌细胞传导控制血流。

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We performed intracellular recording with Lucifer yellow dye microinjection to investigate the cellular pathway(s) by which constriction and dilation are conducted along the wall of arterioles (diameter 47 +/- 1 microns, n = 63) supplying blood flow to the cheek pouch of anesthetized hamsters. At rest, membrane potential (Em) of endothelial (-36 +/- 1 mV) and smooth muscle (-35 +/- 1 mV) cells was not different. Micropipette delivery of norepinephrine (NE) or phenylephrine (PE) produced smooth muscle cell depolarization (5-41 mV) and vasoconstriction (7-49 microns) at the site of release and along the arteriole with no effect on Em of endothelial cells. KCl produced conduction of depolarization and vasoconstriction with similar electrical kinetics in endothelial and smooth muscle cells. Acetylcholine triggered conduction of vasodilation (2-25 microns) and hyperpolarization (3-33 mV) along both cell layers; in smooth muscle, this change in Em was prolonged and followed by a transient depolarization. These cell-specific electrophysiological recordings uniquely illustrate that depolarization and constriction are initiated and conducted along smooth muscle, independent of the endothelium. Furthermore, conduction of vasodilation is explained by the spread of hyperpolarization along homologously coupled endothelial and smooth muscle cells, with distinctive responses between cell layers. The discontinuity between endothelium and smooth muscle indicates that these respective pathways are not electrically coupled during blood flow control.
机译:我们进行了路西法黄色染料显微注射的细胞内记录,以研究沿小动脉壁(直径47 +/- 1微米,n = 63)的壁进行收缩和扩张的细胞途径,从而为小颊袋的血流提供血流。麻醉的仓鼠。静止时,内皮细胞(-36 +/- 1 mV)和平滑肌(-35 +/- 1 mV)的膜电位(Em)相同。去甲肾上腺素(NE)或去氧肾上腺素(PE)的微量移液递送在释放部位和沿小动脉产生平滑肌细胞去极化(5-41 mV)和血管收缩(7-49微米),而对内皮细胞的Em没有影响。氯化钾在内皮和平滑肌细胞中产生具有相似电动力学的去极化和血管收缩传导。乙酰胆碱触发了沿两个细胞层的血管舒张(2-25微米)和超极化(3-33 mV)的传导;在平滑肌中,Em的这种变化被延长,随后发生短暂的去极化。这些特定于细胞的电生理学记录独特地说明了去极化和收缩是沿着平滑肌启动和进行的,与内皮无关。此外,血管舒张的传导可以通过超极化沿着同源耦合的内皮细胞和平滑肌细胞的扩散来解释,在细胞层之间具有独特的反应。内皮和平滑肌之间的不连续性表明,在血流控制过程中,这些各自的通路没有电连接。

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