Yong S L, Xu R, McLarnon J G, Zolotoy A B, Beatch G N, Walker M J
Department of Pharmacology and Therapeutics, The University of British Columbia, Vancouver, British Columbia, Canada.
J Pharmacol Exp Ther. 1999 Apr;289(1):236-44.
This study reports the use of a novel agent, RSD1000 [(+/-)-trans-[2-(4-morpholinyl)cyclohexyl]naphthalene-1-acetate mono hydrochloride], to test the hypothesis that a drug with pKa close to the pH found in ischemic tissue may have selective antiarrhythmic actions against ischemia-induced arrhythmias. The antiarrhythmic ED50 for RSD1000 against ischemic arrhythmias was 2.5 +/- 0.1 micromol/kg/min in rats. This value was significantly lower than doses that suppressed electrically induced arrhythmias. In isolated rat hearts, RSD1000 was approximately 40 times more potent in producing ECG changes (i.e., P-R and QRS prolongation) in acid (pHo = 6.4) and high [K+]o (10.8 mM) buffer than in normal buffer (pHo = 7.4; [K+]o = 3.4 mM). In patch-clamped, whole-cell rat cardiac myocytes, inhibition of sodium (INa) currents by RSD1000 was pH- and use-dependent. The IC50 for INa blockade was lower (P <.05) in acid (0.8 +/- 0.1 microM) than in pH 7.3 (2.9 +/- 0.3 microM), respectively, whereas the IC50 for blockade of transient outward potassium current (ITO) at pH = 6.4 and 7.3 was 3.3 +/- 0.4 and 2.8 +/- 0.1 microM, respectively. Mixed ion channel block in ischemic myocardium with minimal effects on normal cardiac tissue, as governed by the low pKa of RSD1000, may account for its antiarrhythmic activity against ischemia-induced arrhythmias.
本研究报告了一种新型药物RSD1000 [(±)-反式-[2-(4-吗啉基)环己基]萘-1-乙酸单盐酸盐]的应用,以验证以下假说:一种pKa接近缺血组织pH值的药物可能对缺血诱导的心律失常具有选择性抗心律失常作用。RSD1000对大鼠缺血性心律失常的抗心律失常ED50为2.5±0.1微摩尔/千克/分钟。该值显著低于抑制电诱导心律失常的剂量。在离体大鼠心脏中,RSD1000在酸性(pHo = 6.4)和高[K +]o(10.8 mM)缓冲液中产生心电图变化(即P-R和QRS延长)的效力比在正常缓冲液(pHo = 7.4;[K +]o = 3.4 mM)中高约40倍。在膜片钳全细胞大鼠心肌细胞中,RSD1000对钠(INa)电流的抑制是pH和使用依赖性的。INa阻断的IC50在酸性条件下(0.8±0.1 microM)低于pH 7.3时(2.9±0.3 microM)(P <.05),而在pH = 6.4和7.3时,瞬时外向钾电流(ITO)阻断的IC50分别为3. .3±0.4和2.8±0.1 microM。RSD1000的低pKa决定了其在缺血心肌中对离子通道的混合性阻断,而对正常心脏组织影响最小,这可能是其对缺血诱导的心律失常具有抗心律失常活性的原因。