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血管活性激动剂对培养的牛主动脉和豚鼠冠状动脉内皮细胞膜电位的影响。

Effects of vasoactive agonists on the membrane potential of cultured bovine aortic and guinea-pig coronary endothelium.

作者信息

Mehrke G, Pohl U, Daut J

机构信息

Physiologisches Institut der Technischen Universität München, Germany.

出版信息

J Physiol. 1991 Aug;439:277-99. doi: 10.1113/jphysiol.1991.sp018667.

Abstract
  1. The effects of bradykinin, ATP, adenosine, histamine and thrombin on the membrane potential of confluent monolayers of cultured bovine aortic endothelial cells (BAECs) and guinea-pig coronary endothelial cells (GCECs) were studied at 37 degrees C using the whole-cell mode of the patch-clamp technique. 2. The amplitude histogram of the resting potentials of BAEC monolayers showed a bimodal distribution with one peak around -25 mV and another peak around -85 mV. Transitions from one potential level to the other were observed. The bistable membrane potential can be explained by an N-shaped current-voltage relation of the endothelial cell membrane. 3. When BAECs with a low resting potential (-10 to -30 mV) were superfused with maximally effective concentrations of ATP (2-10 microM) an initial hyperpolarization of -80 to -90 mV was observed which decayed to a plateau of about -60 mV within 1 min. When ATP was removed after 2-3 min the membrane potential returned to control level within 1 min. This was followed by a second hyperpolarization of 10-20 mV, which decayed within 15 min. 4. In the absence of extracellular calcium, ATP produced only a brief transient hyperpolarization in aortic endothelium. The plateau and the secondary hyperpolarization were abolished. These findings are consistent with the idea that the changes in membrane potential reflect changes in intracellular free Ca2+ and that the initial peak is due to release of Ca2+ from intracellular stores, whereas the plateau and the secondary hyperpolarization depend on transmembrane Ca2+ influx. 5. Bradykinin evoked potential changes similar to ATP in BAECs, except that the secondary hyperpolarization during wash-out was absent. When the membrane potential was more negative than -80 mV, ATP and bradykinin induced only a small initial hyperpolarization followed by a depolarization of up to 20 mV. 6. In aortic endothelium, ADP (10 microM) evoked a much smaller response than ATP. Adenosine (10 microM), thrombin (2 units/ml), acetylcholine (10 microM) and histamine (10 microM) had only a very small effect on the membrane potential, if any. 7. The amplitude histogram of the membrane potential of GCECs showed only one peak around -35 mV. In coronary endothelium, application of bradykinin, ATP, histamine, thrombin, acetylcholine and adenosine all evoked a transient hyperpolarization of 10-40 mV lasting 1 min or less, which then turned into a depolarization. 8. The K+ channel openers cromakalim (BRL 34915) and lemakalim (BRL 38227) did not affect the membrane potential of GCECs or BAECs.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 采用膜片钳技术的全细胞模式,在37℃研究了缓激肽、ATP、腺苷、组胺和凝血酶对培养的牛主动脉内皮细胞(BAECs)和豚鼠冠状动脉内皮细胞(GCECs)汇合单层细胞膜电位的影响。2. BAEC单层细胞静息电位的幅度直方图呈双峰分布,一个峰值在-25mV左右,另一个峰值在-85mV左右。观察到从一个电位水平到另一个电位水平的转变。双稳态膜电位可用内皮细胞膜的N形电流-电压关系来解释。3. 当静息电位较低(-10至-30mV)的BAECs用最大有效浓度的ATP(2-10μM)灌流时,观察到初始超极化-80至-90mV,在1分钟内衰减至约-60mV的平台期。2-3分钟后去除ATP,膜电位在1分钟内恢复到对照水平。随后是第二次10-20mV的超极化,在15分钟内衰减。4. 在无细胞外钙的情况下,ATP在主动脉内皮中仅产生短暂的瞬时超极化。平台期和二次超极化消失。这些发现与膜电位变化反映细胞内游离Ca2+变化的观点一致,即初始峰值是由于Ca2+从细胞内储存释放,而平台期和二次超极化依赖于跨膜Ca2+内流。5. 缓激肽在BAECs中引起的电位变化与ATP相似,只是洗脱期间没有二次超极化。当膜电位比-80mV更负时,ATP和缓激肽仅诱导小的初始超极化,随后去极化达20mV。6. 在主动脉内皮中,ADP(10μM)引起的反应比ATP小得多。腺苷(10μM)、凝血酶(2单位/ml)、乙酰胆碱(10μM)和组胺(10μM)对膜电位的影响(如果有的话)非常小。7. GCECs膜电位的幅度直方图仅在-35mV左右有一个峰值。在冠状动脉内皮中,应用缓激肽、ATP、组胺、凝血酶、乙酰胆碱和腺苷均引起10-40mV的瞬时超极化,持续1分钟或更短时间,然后转变为去极化。8. K+通道开放剂克罗卡林(BRL 34915)和雷马卡林(BRL 38227)不影响GCECs或BAECs的膜电位。(摘要截于400字)

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