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钠氢交换体1型强效选择性抑制剂唑尼泊ide在体外循环实验模型中的心脏保护作用

Cardioprotective efficacy of zoniporide, a potent and selective inhibitor of Na+/H+ exchanger isoform 1, in an experimental model of cardiopulmonary bypass.

作者信息

Clements-Jewery Hugh, Sutherland Fiona J, Allen Mary C, Tracey W Ross, Avkiran Metin

机构信息

Centre for Cardiovascular Biology and Medicine, King's College London, The Rayne Institute, St Thomas' Hospital, London.

出版信息

Br J Pharmacol. 2004 May;142(1):57-66. doi: 10.1038/sj.bjp.0705749. Epub 2004 Mar 22.

Abstract
  1. We determined (1) the inhibitory potency of zoniporide against the native Na(+)/H(+) exchanger isoform 1 (NHE1) that is expressed in adult rat ventricular myocytes and platelets, and (2) the cardioprotective efficacy of zoniporide in isolated, blood-perfused adult rat hearts subjected to cardioplegic arrest, hypothermic ischaemia (150 min at 25 degrees C) and normothermic reperfusion (60 min at 37 degrees C). 2. In isolated myocytes, in which NHE1 activity was determined directly by measurement of H(+) efflux rate following intracellular acidification, zoniporide produced a dose-dependent inhibition of such activity (IC(50) 73 nm at 25 degrees C). A comparable NHE1-inhibitory potency was retained at 37 degrees C. 3. In platelets, in which the rate of cell swelling was used as a surrogate index of NHE1 activity, this was again inhibited by zoniporide (IC(50) 67 nm at 25 degrees C). 4. In the isolated heart model, administration of zoniporide (loading bolus of 1 mg kg(-1) i.v. plus continuous infusion at 1.98 mg kg(-1) h(-1) i.v.) to the support animal achieved a free plasma drug concentration of >/=1 microm. At this dose, zoniporide afforded significant cardioprotective benefit relative to vehicle treatment, with improved preservation of left ventricular end-diastolic and developed pressures and coronary perfusion pressure during reperfusion. Myocardial myeloperoxidase activity was also attenuated by zoniporide treatment, indicating reduced neutrophil accumulation. 5. These data show that zoniporide (1) is a potent inhibitor of native NHE1 activity in ventricular myocytes and platelets, and (2) affords significant cardioprotective benefit during ischaemia and reperfusion in an experimental model that mimics several distinctive features of human cardioplegic arrest with cardiopulmonary bypass.
摘要
  1. 我们测定了:(1) 唑尼普明对成年大鼠心室肌细胞和血小板中表达的天然钠氢交换体同工型1(NHE1)的抑制效力;(2) 唑尼普明对离体、血液灌注的成年大鼠心脏在心脏停搏、低温缺血(25℃下150分钟)和常温再灌注(37℃下60分钟)时的心脏保护效果。2. 在离体心肌细胞中,通过测量细胞内酸化后氢离子外流速率直接测定NHE1活性,唑尼普明对该活性产生剂量依赖性抑制(25℃时IC50为73 nM)。在37℃时保留了相当的NHE1抑制效力。3. 在血小板中,细胞肿胀速率用作NHE1活性的替代指标,唑尼普明再次抑制了该指标(25℃时IC50为67 nM)。4. 在离体心脏模型中,给支持动物静脉注射唑尼普明(负荷剂量1 mg·kg-1静脉注射加1.98 mg·kg-1·h-1静脉持续输注),使游离血浆药物浓度≥1 μM。在此剂量下,与溶媒处理相比,唑尼普明提供了显著的心脏保护益处,在再灌注期间左心室舒张末期压力、左心室发展压和冠状动脉灌注压的保存得到改善。唑尼普明处理还减弱了心肌髓过氧化物酶活性,表明中性粒细胞积聚减少。5. 这些数据表明,唑尼普明:(1) 是心室肌细胞和血小板中天然NHE1活性的强效抑制剂;(2) 在模拟人类体外循环心脏停搏若干独特特征的实验模型中,在缺血和再灌注期间提供显著的心脏保护益处。

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