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孤立脑和骨骼肌内皮管的电动力学:G 蛋白偶联受体和 K 通道的差异作用。

Electrical dynamics of isolated cerebral and skeletal muscle endothelial tubes: Differential roles of G-protein-coupled receptors and K channels.

机构信息

Basic Sciences Loma Linda University Loma Linda CA USA.

出版信息

Pharmacol Res Perspect. 2018 Apr 6;6(2):e00391. doi: 10.1002/prp2.391. eCollection 2018 Apr.

Abstract

Electrical dynamics of freshly isolated cerebral endothelium have not been determined independently of perivascular nerves and smooth muscle. We tested the hypothesis that endothelium of cerebral and skeletal muscle arteries differentially utilizes purinergic and muscarinic signaling pathways to activate endothelium-derived hyperpolarization. Changes in membrane potential () were recorded in intact endothelial tubes freshly isolated from posterior cerebral and superior epigastric arteries of male and female C57BL/6 mice (age: 3-8 months). was measured in response to activation of purinergic (P2Y) and muscarinic (M) receptors in addition to small- and intermediate-conductance Ca-activated K (SK/IK) and inward rectifying K (K) channels using ATP (100 μmol·L), acetylcholine (ACh; 10 μmol·L), NS309 (0.01-10 μmol·L), and 15 mmol·L KCl, respectively. Intercellular coupling was demonstrated via transfer of propidium iodide dye and electrical current (±0.5-3 nA) through gap junctions. With similarities observed across gender, peak hyperpolarization to ATP and ACh in skeletal muscle endothelial tubes was twofold and ~sevenfold higher, respectively, vs cerebral endothelial tubes, whereas responses to NS309 were similar (from resting ~-30 mV to maximum ~-80 mV). Hyperpolarization (8 mV) occurred during 15 mmol·L KCl treatment in cerebral but not skeletal muscle endothelial tubes. Despite weaker hyperpolarization during endothelial GPCR stimulation in cerebral vs skeletal muscle endothelium, the capability for robust SK/IK activity is preserved across brain and skeletal muscle. As vascular reactivity decreases with aging and cardiovascular disease, endothelial K channel activity may be calibrated to restore blood flow to respective organs regardless of gender.

摘要

尚未独立于血管周围神经和平滑肌确定新鲜分离的脑内皮的电动力学。我们检验了这样一个假设,即脑和骨骼肌动脉的内皮通过不同的嘌呤能和毒蕈碱能信号通路来激活内皮衍生的去极化。在雄性和雌性 C57BL/6 小鼠(年龄:3-8 个月)的后脑血管和上胃血管中新鲜分离的完整内皮管中记录膜电位()的变化。除了小和中等电导钙激活的钾(SK/IK)和内向整流钾(K)通道外,还测量了对嘌呤能(P2Y)和毒蕈碱能(M)受体的激活的反应性,使用 ATP(100 μmol·L),乙酰胆碱(ACh;10 μmol·L),NS309(0.01-10 μmol·L)和 15 mmol·L KCl。通过缝隙连接传递碘化丙啶染料和电流(±0.5-3 nA)证明了细胞间耦联。观察到两性之间的相似性,在骨骼肌内皮管中,ATP 和 ACh 的最大去极化峰值分别约为脑内皮管的两倍和七倍,而对 NS309 的反应相似(从静息-30 mV 到最大-80 mV)。在 15 mmol·L KCl 处理期间,在脑内皮管中发生去极化(~8 mV),但在骨骼肌内皮管中则没有。尽管脑内皮中内皮 GPCR 刺激时的去极化较弱,但在脑和骨骼肌内皮中均保留了强大的 SK/IK 活性的能力。由于血管反应性随年龄增长和心血管疾病而降低,内皮 K 通道活性可能会被校准以恢复各自器官的血流,而与性别无关。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1db8/5889193/4389262d225f/PRP2-6-e00391-g001.jpg

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