Dietrich H H, Kimura M, Dacey R G
Department of Neurosurgery, Washington University School of Medicine, St. Louis, Missouri 63110.
Am J Physiol. 1994 Apr;266(4 Pt 2):H1681-6. doi: 10.1152/ajpheart.1994.266.4.H1681.
The coupling between intracellular Ca2+ concentration ([Ca2+]i) and smooth muscle cell (SMC) contractility is well known, but recent reports suggest that SMCs can contract without an increase in [Ca2+]i. Penetrating arterioles were isolated from rat cortex, cannulated, and loaded extraluminally with fura 2. We used ratio imaging of corresponding vessel wall areas to estimate and correlate [Ca2+]i to the vessel diameter during various extraluminal treatments. Control diameter was 45.6 +/- 3.9 (SE) microns with an estimated [Ca2+]i of 181 +/- 18 nM. Extraluminal papaverine or pH of 6.8 dilated the vessels to 61.0 +/- 6.6 and 57.8 +/- 5.8 microns and decreased [Ca2+]i to 108 +/- 33 and 155 +/- 8 nM, respectively. Alkaline pH of 7.65 or the Ca2+ ionophore ionomycin constricted the arterioles to 34.8 +/- 3.9 and 30.0 +/- 5.8 microns and increased [Ca2+]i to 273 +/- 47 and 853 +/- 155 nM, respectively. These results show an inverse relationship between vessel diameter and [Ca2+]i. Blocking the production of endothelium-derived nitric oxide (EDNO) with N omega-nitro-L-arginine constricted the vessels to 34.4 +/- 3.5 microns without raising but lowering [Ca2+]i to 157 +/- 44 nM. The dissociation of vessel tone and estimated [Ca2+]i after EDNO blocking has not been reported before in cerebral arterioles and may indicate that EDNO regulates vascular tone in a Ca(2+)-independent manner.
细胞内钙离子浓度([Ca2+]i)与平滑肌细胞(SMC)收缩性之间的偶联是众所周知的,但最近的报告表明,平滑肌细胞可以在[Ca2+]i不增加的情况下收缩。从大鼠皮质分离出穿通小动脉,插管,并在管腔外加载fura 2。我们使用相应血管壁区域的比率成像来估计[Ca2+]i,并将其与各种管腔外处理期间的血管直径相关联。对照直径为45.6±3.9(SE)微米,估计[Ca2+]i为181±18 nM。管腔外给予罂粟碱或pH值为6.8时,血管扩张至61.0±6.6和57.8±5.8微米,[Ca2+]i分别降至108±33和155±8 nM。pH值为7.65的碱性溶液或钙离子载体离子霉素使小动脉收缩至34.8±3.9和30.0±5.8微米,[Ca2+]i分别增加至273±47和853±155 nM。这些结果表明血管直径与[Ca2+]i之间呈负相关。用Nω-硝基-L-精氨酸阻断内皮源性一氧化氮(EDNO)的产生使血管收缩至34.4±3.5微米,[Ca2+]i没有升高反而降至157±44 nM。EDNO阻断后血管张力与估计的[Ca2+]i的解离在脑小动脉中以前尚未见报道,这可能表明EDNO以不依赖Ca(2+)的方式调节血管张力。