首页> 外文期刊>Journal of Inorganic Biochemistry: An Interdisciplinary Journal >Effects of cadmium on Na+ transport in the isolated skin of the toad Pleurodema thaul
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Effects of cadmium on Na+ transport in the isolated skin of the toad Pleurodema thaul

机译:镉对蟾蜍蟾蜍离体皮肤中Na +转运的影响

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Cadmium ions applied to either (outer or inner) surface of the isolated toad skin dose-dependently increased the short-circuit current (SCC), the potential difference (V) and the active sodium conductance (G(Na)) in the concentration range 0.07-0.50mM. Maximal stimulatory effect was over 30% with an EC(50) of about 0.1mM. The effect of the highest concentration used (0.75mM) decreased considerably, and when it was applied to the inner surface (10 experiments), induced between 30% and 40% inhibition of the electric parameters in four experiments. Pretreatment with amiloride inverted the stimulatory effect of externally applied Cd(2+), suggesting competitive action on the apical Na(+) channel. The effect of noradrenaline (NA) was increased after outer application of Cd(2+) and decreased after inner application of the metal: the latter effect might be due to cadmium inhibition of the activity of Na(+),K(+)-ATPase. On the other hand, pretreatment with amiloride was followed by partial although transient reversal of its effects by serosal Cd(2+), which might be explained by action of cadmium on cytoplasmic lysine residues concerned with Na(+) channel gating. The amiloride test showed that the increment of the electric parameters was due principally to stimulation of the driving potential for Na(+) (V-E(Na(+))) and that inhibition was accompanied by a reduction in the V-E(Na(+)) and by a significant decrease in skin resistance indicating possible disruption of membrane or cell integrity. These data are in favor of the possibility that externally applied Cd(2+) activates toad skin ion transport, partly by increasing apical sodium conductance and also by stimulating the V-E(Na(+)), and that internally applied Cd(2+), with easier access to membrane and cellular constituents, may inhibit the sodium pump.
机译:在浓度范围内,施加到隔离的蟾蜍皮(外或内)表面的镉离子剂量依赖性地增加短路电流(SCC),电势差(V)和活性钠电导(G(Na)) 0.07-0.50mM。最大刺激效果超过30%,EC(50)约为0.1mM。使用的最高浓度(0.75mM)的影响大大降低,并且当将其应用于内表面时(10个实验),在四个实验中引起了30%至40%的电参数抑制。用阿米洛利进行的预处理可逆转外部施加的Cd(2+)的刺激作用,表明对根尖Na(+)通道的竞争作用。外用Cd(2+)后去甲肾上腺素(NA)的作用增加,而内用金属后去甲肾上腺素(NA)的作用减弱:后者的作用可能是由于镉抑制了Na(+),K(+)-的活性ATP酶。另一方面,用阿米洛利进行预处理后,尽管浆膜Cd(2+)暂时逆转了其作用,但可能会部分逆转,这可能由镉对与Na(+)通道门控有关的胞质赖氨酸残基的作用来解释。阿米洛利测试表明,电参数的增加主要是由于刺激了Na(+)(VE(Na(+)))的驱动电位,抑制作用伴随着VE(Na(+)的减少)和皮肤抵抗力的显着降低,表明可能破坏了膜或细胞的完整性。这些数据有利于外用Cd(2+)激活蟾蜍皮肤离子运输的可能性,部分是通过增加根尖钠电导率并通过刺激VE(Na(+)),以及内用Cd(2+)较容易接触膜和细胞成分可能会抑制钠泵。

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