首页> 美国卫生研究院文献>The Journal of Physiology >The effect of sodium calcium and metabolic inhibitors on calcium efflux from goldfish heart ventricles.
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The effect of sodium calcium and metabolic inhibitors on calcium efflux from goldfish heart ventricles.

机译:钠钙和代谢抑制剂对金鱼心室钙外流的影响。

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摘要

1. 45Ca efflux and tissue Ca content were examined in goldfish ventricles under conditions known to affect cellular Ca movements. 2. EGTA or Ca-EGTA was added to the washout solutions in sufficient concentration (10 mM) to avoid retardation of the apparent tissue 45Ca efflux by extracellular 45Ca binding or backflux. 3. After a variable initial increase, the cellular Ca content usually stabilizes within 60 min when ventricles are immersed in Li- or K-substituted saline containing 1.8 mM Ca0 (under these conditions the internal Ca2+ concentration is below 10(-5) M). 4. 45Ca efflux is maximally activated by external concentrations of Ca2+ as low as 10(-6) M, in both Na-containing and Na-free saline. 5. 45Ca efflux decreases in Na-free solutions. It is reactivated by Na-saline. The effect of different external Na concentration on 45Ca efflux is comparable at external Ca2+ concentrations between 10(-6) M and 2 x 10(-3) M. 6. Reactivation of Ca efflux after Na0 readmission is inhibited by metabolic poisoning, or in the presence of 10 mM-caffeine. Loading with 45Ca at very low external Ca2+ concentration prevents the inhibition of Ca efflux in Na-free medium. 7. Caffeine (10 mM) produces contractions of about equla size when K-depolarized preparations are immersed in either Na- or Li-saline. At the same time there is a similar increase in 45Ca efflux in absence of Na0 and in its presence. 8. In the virtual absence of Ca2+0 (10(-5) M-Ca, 10(-2) M-EGTA) and Na+0, the residual 45Ca efflux is reversibly inhibited by cyanide (2 mM). 9. The results are roughly compatible with the general concept of ATP-dependent Na-Ca exchange in internal Ca2+ homeostasis. However, this hypothesis should probably be modified to account for the fact that under physiological concentrations Na+0 and Ca2+0 do not compete for activating 45Ca efflux. Metabolic products may be involved in Na0- and Ca0-dependent Ca efflux. It is therefore not excluded that a Na-independent active mechanism co-operates with Na-Ca exchange in Ca extrusion.
机译:1.在已知影响细胞钙运动的条件下,对金鱼脑室中的45Ca外排和组织Ca含量进行了检查。 2.以足够的浓度(10mM)将EGTA或Ca-EGTA加入到洗脱溶液中,以避免细胞外45Ca结合或反流阻碍表观组织45Ca外排。 3.经过不同的初始增加后,当心室浸入含有1.8 mM Ca0的Li或K取代的盐水中时,细胞Ca含量通常会在60分钟内稳定(在这些条件下,内部Ca2 +浓度低于10(-5)M) 。 4.在含钠和无钠的盐水中,外部浓度低至10(-6)M的Ca2 +均可最大程度地激活45Ca流出。 5.在无钠溶液中45Ca流出减少。它被Na-saline重新激活。在外部Ca2 +浓度在10(-6)M和2 x 10(-3)M之间时,不同外部Na浓度对45Ca外排的影响是可比的。6.代谢中毒抑制了Na0再入后Ca外排的重新激活,或10 mM咖啡因的存在。在非常低的外部Ca2 +浓度下加载45Ca可以防止在无钠培养基中抑制Ca外排。 7.当将K型去极化的制剂浸入Na-或Li-盐水中时,咖啡因(10 mM)会产生约等量的收缩。同时,在不存在Na0和存在Na0的情况下,45Ca外排量也有类似的增加。 8.在实际上不存在Ca2 + 0(10(-5)M-Ca,10(-2)M-EGTA)和Na + 0的情况下,残留的45Ca外排被氰化物(2 mM)可逆地抑制。 9.结果与内部Ca2 +体内平衡中ATP依赖的Na-Ca交换的一般概念大致相符。但是,可能应修改该假设,以说明在生理浓度下Na + 0和Ca2 + 0不能竞争激活45Ca流出的事实。代谢产物可能参与依赖Na0和Ca0的Ca外排。因此,不排除Na独立的活性机制与Ca挤出中的Na-Ca交换协同作用。

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