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豚鼠单个心室肌细胞钠钙交换电流的鉴定

Identification of sodium-calcium exchange current in single ventricular cells of guinea-pig.

作者信息

Kimura J, Miyamae S, Noma A

机构信息

National Institute for Physiological Sciences, Okazaki, Japan.

出版信息

J Physiol. 1987 Mar;384:199-222. doi: 10.1113/jphysiol.1987.sp016450.

Abstract
  1. The Na-Ca exchange current was investigated in single ventricular cells from guinea-pig hearts by combining the techniques of whole-cell voltage clamp and intracellular perfusion. 2. The membrane conductance was minimized by blocking Ca and K channels as well as the Na-K pump. Under these conditions, when Ca2+ was loaded internally by a pipette solution containing 430 nM-Ca2+, changing the Li+-rich external solution to a Na+-rich one induced a significant inward current. Applying external Na+ in the absence of internal Ca2+ did not appreciably change the current. 3. In contrast, perfusing 1 mM-external Ca2+ in the presence of internal Na+ which was loaded by a 20 mM-Na+ pipette solution, induced a marked outward current. Ca2+ superfusion in the absence of internal Na+ caused only a small current change. 4. The current-voltage relation of external-Ca2+- and external-Na+-induced current showed almost exponential voltage dependence as given by the equation i = a exp (rEF/RT), where a is a scaling factor that determines the magnitude of the current and r is a partition parameter used in the rate theory and represents the position of the energy barrier in the electrical field, which indicates the steepness of the voltage dependence of the current. E, F, R and T have their usual meanings. The value of a was 1-2 microA/microF and r about 0.35 for the Ca2+-induced outward current. At very positive or negative potentials, the current magnitude became smaller than expected from an exponential relation. 5. The current was blocked by heavy metal cations, such as La3+, Cd2+, Mn2+ and Ni2+ and partially blocked by amiloride and D600. 6. The temperature coefficient (Q10) value of the Ca2+-induced outward current was 3.6 +/- 0.4 (n = 4) at 0 mV and 4.0 +/- 0.9 at 50 mV in the range between 21 and 36 degrees C. 7. The outward current magnitude showed a sigmoidal dependence upon the external Ca2+ concentration with a half-maximum concentration, K1/2 of 1.38 mM and a Hill coefficient of 0.9 +/- 0.2 (n = 5). 8. Sr2+ could replace Ca2+ with K1/2 of 7 mM. Mg2+ and Ba2+, however, did not replace Ca2+. 9. The inward current component also showed a sigmoidal external Na+ dependence with K1/2 of 87.5 +/- 10.7 mM and a Hill coefficient of 2.9 +/- 0.4 (n = 6). 10. The reversal potential of the current was obtained near the values expected for 3 Na+:1 Ca2+ exchange.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 采用全细胞膜片钳技术和细胞内灌注技术,对豚鼠心脏单个心室细胞中的钠钙交换电流进行了研究。2. 通过阻断钙通道、钾通道以及钠钾泵,使膜电导降至最低。在这些条件下,当通过含有430 nM钙的移液管溶液将钙离子加载到细胞内部时,将富含锂的外部溶液换成富含钠的溶液会诱导出显著的内向电流。在没有内部钙离子的情况下施加外部钠离子,电流没有明显变化。3. 相反,在通过20 mM钠的移液管溶液加载内部钠离子的情况下,灌注1 mM外部钙离子会诱导出明显的外向电流。在没有内部钠离子的情况下进行钙离子灌流,只会引起较小的电流变化。4. 外部钙离子和外部钠离子诱导电流的电流-电压关系几乎呈指数电压依赖性,由方程i = a exp (rEF/RT)给出,其中a是一个比例因子,决定电流大小,r是速率理论中使用的分配参数,代表电场中能垒的位置,表明电流电压依赖性的陡峭程度。E、F、R和T具有其通常的含义。对于钙离子诱导的外向电流,a值为1-2微安/微法,r约为0.35。在非常正或负的电位下,电流大小变得比指数关系预期的要小。5. 该电流被重金属阳离子如La3+、Cd2+、Mn2+和Ni2+阻断,并被阿米洛利和D600部分阻断。6. 在21至36摄氏度范围内,钙离子诱导的外向电流的温度系数(Q10)值在0 mV时为3.6 +/- 0.4(n = 4),在50 mV时为4.0 +/- 0.9。7. 外向电流大小对外界钙离子浓度呈S形依赖性,半最大浓度K1/2为1.38 mM,希尔系数为0.9 +/- 0.2(n = 5)。8. Sr2+可以取代Ca2+,K1/2为7 mM。然而,Mg2+和Ba2+不能取代Ca2+。9. 内向电流成分对外界钠离子也呈S形依赖性,K1/2为87.5 +/- 10.7 mM,希尔系数为2.9 +/- 0.4(n = 6)。10. 电流的反转电位接近3个钠离子:1个钙离子交换预期的值。(摘要截断于400字)

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