Norins N A, Wendelberger K, Hoffman R G, Keller P A, Madden J A
Department of Pediatrics, Medical College of Wisconsin, Milwaukee.
J Cereb Blood Flow Metab. 1992 Sep;12(5):866-72. doi: 10.1038/jcbfm.1992.118.
We used an isolated, pressurized, and perfused feline middle cerebral artery preparation to measure how changes in intraluminal pressure and alterations in O2 and CO2 affect vessel diameter and myogenic contractile activation before and after treatment with indomethacin (IND). Vessel diameters were measured over the pressure range 60-140 mm Hg. The arteries were then exposed to low O2 (50 torr) and/or high CO2 (65 torr) and diameters remeasured over the same range. Under control conditions, the arteries exhibited myogenic contractile activation. Exposure to low O2, high CO2, or a mixture of low O2/high CO2, increased vessel diameter but did not change the vessels' myogenic contractile responsiveness to changes in pressure. Arteries exposed to IND decreased in diameter but retained myogenic contractile activity. In the presence of IND, vessels dilated to both low O2 and a mixture of low O2/high CO2, but did not dilate to high CO2 alone. Under all conditions, vessels retained myogenic contractile activity. Results obtained under control conditions and low O2 confirm those of others using similar systems. Myogenic contractile activity in the presence of high CO2 or a mixture of low O2/high CO2 has not been previously reported. The dilation to low O2 but not to high CO2 in the presence of IND suggests that this drug's effects in cerebral arteries are not limited solely to inhibition of prostaglandin synthesis.
我们使用一种分离、加压且灌注的猫脑中动脉标本,以测量在使用吲哚美辛(IND)治疗前后,管腔内压力变化以及氧气(O2)和二氧化碳(CO2)改变如何影响血管直径和肌源性收缩激活。在60 - 140毫米汞柱的压力范围内测量血管直径。然后将动脉暴露于低氧(50托)和/或高二氧化碳(65托)环境中,并在相同压力范围内重新测量直径。在对照条件下,动脉表现出肌源性收缩激活。暴露于低氧、高二氧化碳或低氧/高二氧化碳混合物中,会增加血管直径,但不会改变血管对压力变化的肌源性收缩反应性。暴露于IND的动脉直径减小,但保留了肌源性收缩活性。在IND存在的情况下,血管对低氧和低氧/高二氧化碳混合物均有扩张反应,但对单独的高二氧化碳没有扩张反应。在所有条件下,血管均保留肌源性收缩活性。在对照条件和低氧条件下获得的结果证实了使用类似系统的其他研究结果。此前尚未报道过高二氧化碳或低氧/高二氧化碳混合物存在时的肌源性收缩活性。在IND存在的情况下,血管对低氧有扩张反应,但对高二氧化碳没有扩张反应,这表明该药物在脑动脉中的作用不仅限于抑制前列腺素合成。