Department of Human and Animal Physiology, Moscow State University, Leninskiye Gory, 1, 12, Moscow 119991, Russia; Department of Fundamental and Applied Physiology, Pirogov Russian National Research Medical University, Ostrovityanova Street, 1, Moscow 117997, Russia.
Comp Biochem Physiol C Toxicol Pharmacol. 2013 Sep;158(3):181-6. doi: 10.1016/j.cbpc.2013.08.001. Epub 2013 Aug 22.
KB-R7943 (2-[2-[4-(4-nitrobenzyloxy)phenyl]ethyl]isothiourea) was developed as a specific inhibitor of the sarcolemmal sodium-calcium exchanger (NCX) with potential experimental and therapeutic use. However, KB-R7943 is shown to be a potent blocker of several ion currents including inward and delayed rectifier K(+) currents of cardiomyocytes. To further characterize KB-R7943 as a blocker of the cardiac inward rectifiers we compared KB-R7943 sensitivity of the background inward rectifier (IK1) and the carbacholine-induced inward rectifier (IKACh) currents in mammalian (Rattus norvegicus; rat) and fish (Carassius carassius; crucian carp) cardiac myocytes. The basal IK1 of ventricular myocytes was blocked with apparent IC50-values of 4.6×10(-6) M and 3.5×10(-6) M for rat and fish, respectively. IKACh was almost an order of magnitude more sensitive to KB-R7943 than IK1 with IC50-values of 6.2×10(-7) M for rat and 2.5×10(-7) M for fish. The fish cardiac NCX current was half-maximally blocked at the concentration of 1.9-3×10(-6) M in both forward and reversed mode of operation. Thus, the sensitivity of three cardiac currents to KB-R7943 block increases in the order IK1~INCX<IKACh. Therefore, the ability of KB-R7943 to block inward rectifier potassium currents, in particular IKACh, should be taken into account when interpreting the data with this inhibitor from in vivo and in vitro experiments in both mammalian and fish models.
KB-R7943(2-[2-[4-(4-硝基苄氧基)苯基]乙基]异硫脲)是一种肌浆网钠钙交换体(NCX)的特异性抑制剂,具有潜在的实验和治疗用途。然而,KB-R7943 被证明是多种离子电流的有效阻断剂,包括心肌细胞的内向和延迟整流钾(K+)电流。为了进一步将 KB-R7943 表征为心脏内向整流器的阻断剂,我们比较了 KB-R7943 对哺乳动物(Rattus norvegicus;大鼠)和鱼类(Carassius carassius;鲫鱼)心肌细胞中背景内向整流(IK1)和卡巴胆碱诱导的内向整流(IKAch)电流的敏感性。心室肌细胞的基础 IK1 被阻断,大鼠和鱼类的表观 IC50 值分别为 4.6×10(-6) M 和 3.5×10(-6) M。IKAch 对 KB-R7943 的敏感性比 IK1 高一个数量级,大鼠和鱼类的 IC50 值分别为 6.2×10(-7) M 和 2.5×10(-7) M。鱼类心脏 NCX 电流在正向和反向操作模式下,浓度为 1.9-3×10(-6) M 时被半最大阻断。因此,三种心脏电流对 KB-R7943 阻断的敏感性按 IK1~INCX<IKAch 的顺序增加。因此,在解释哺乳动物和鱼类模型体内和体外实验中使用该抑制剂获得的数据时,应考虑 KB-R7943 阻断内向整流钾电流(特别是 IKACh)的能力。