乙酰胆碱对环AMP和GMP诱导的肥厚犬心肌细胞耗氧量变化的影响。

Journal of autonomic pharmacology Pub Date : 1999-02-01
G X Gong, M Straznicka, H R Weiss, J Tse, P M Scholz
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引用次数: 0

摘要

1. 我们假设乙酰胆碱会减弱cAMP升高和cGMP降低对狗心肌细胞氧耗(VO2)的代谢作用,而这种作用在主动脉瓣置换术引起的左心室肥厚(LVH)中会发生改变。2. 在电刺激(5 ms, 1 Hz, 2 mm Ca2+)时,用Clark O2电极测量了对照犬(n = 7)和LVH犬(n = 6)心室肌细胞悬浮液的稳态VO2。用放射免疫法测定环AMP和环GMP。在10(-7,-6,-5,-4)M乙酰胆碱和不含10(-6)M乙酰胆碱的情况下,细胞cAMP均被福斯克林(腺苷酸环化酶刺激剂)增加,cGMP被LY83583(鸟苷酸环化酶抑制剂)降低。3.LVH的基线cGMP水平(62 +/- 10 fmol 10(-5)肌细胞)显著高于对照组(20 +/- 3),尽管心肌细胞VO2 (356 +/- 39 nL O2 min(-1) 10(-5)肌细胞)和cAMP水平(3.9 +/- 0.6 nmol 10(5-1)肌细胞)与对照组(312 +/- 23和6.9 +/- 3.1)相似。4. Forskolin增加了对照组和LVH肌细胞的cAMP,使对照组和LVH肌细胞的VO2分别增加了51 +/- 13和91 +/- 65。LY83583降低对照组和LVH肌细胞cGMP水平,使对照组VO2增加128 +/- 57,LVH肌细胞VO2增加43 +/- 26。5. 乙酰胆碱使对照组cAMP、cGMP和VO2水平分别改变为2.4 +/- 0.4、30 +/- 3和213 +/- 27,LVH改变为2.5 +/- 0.3、85 +/- 9和261 +/- 32。乙酰胆碱将福斯克林对心肌细胞VO2的最大影响减弱至对照组的32 +/- 27,LVH细胞的66 +/- 56。乙酰胆碱也使LY83583的最大作用在对照组降至82 +/- 50,在LVH肌细胞降至19 +/- 19。6. 心肌细胞cAMP升高和cGMP降低的正代谢作用被乙酰胆碱所削弱。在LVH心肌细胞中,福斯克林显著增加心肌细胞cGMP。乙酰胆碱降低了对照组和LVH肌细胞中cAMP升高或cGMP降低引起的心肌细胞VO2的增加,尽管LVH肌细胞中cAMP的绝对下降减少,cGMP的绝对值更高。
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Altered effects of acetylcholine on cyclic AMP and GMP induced changes in O2 consumption of hypertrophic dog cardiac myocytes.

1. We hypothesized that acetylcholine would attenuate the metabolic effect of increasing cAMP and decreasing cGMP on cardiac myocyte O2 consumption (VO2) in dog, and this effect would be altered in left ventricular hypertrophy (LVH) produced by aortic valve placation. 2. Steady-state VO2 of a suspension of ventricular myocytes from control (n = 7) and LVH (n = 6) dogs was measured by Clark O2 electrodes during electrical stimulation (5 ms, 1 Hz, in 2 mm Ca2+). Cyclic AMP and cyclic GMP were determined by radioimmunoassay. Cellular cAMP was increased by forskolin (adenylate cyclase stimulator) and cGMP was decreased by LY83583 (guanylate cyclase inhibitor) both at 10(-7,-6,-5,-4) M with and without 10(-6) M acetylcholine. 3. Baseline cGMP level in LVH (62 +/- 10 fmol 10(-5) myocytes) was significantly greater than that in control (20 +/- 3), although the myocyte VO2 (356 +/- 39 nL O2 min(-1) 10(-5) myocytes) and cAMP levels (3.9 +/- 0.6 nmol 10(5-1) myocytes) were similar to control (312 +/- 23 and 6.9 +/- 3.1). 4. Forskolin increased myocyte cAMP in both control and LVH myocytes and increased VO2 by 51 +/- 13 in control and 91 +/- 65 in LVH myocytes. LY83583 decreased myocyte cGMP levels in control and LVH myocytes and increased VO2 by 128 +/- 57 in control and 43 +/- 26 in LVH myocytes. 5. Acetylcholine altered the cAMP, cGMP, and VO2 levels in control to 2.4 +/- 0.4, 30 +/- 3 and 213 +/- 27 and LVH to 2.5 +/- 0.3, 85 +/- 9 and 261 +/- 32. Acetylcholine attenuated the maximal effects of forskolin on VO2 to 32 +/- 27 in control and 66 +/- 56 in LVH myocytes. Acetylcholine also decreased the maximal effects of LY83583 to 82 +/- 50 in control and 19 +/- 19 in LVH myocytes. 6. The positive metabolic effects of both increases in myocyte cAMP and decreases in cGMP were blunted by acetylcholine. There was a significant increase in myocyte cGMP with forskolin in LVH myocytes. Acetylcholine decreased the increased myocyte VO2 caused by elevated cAMP or decreased cGMP in both control and LVH myocytes, although the absolute decrease in cAMP was reduced and the absolute values of cGMP were higher in LVH myocytes.

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