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Effects of D2O and Osmotic Gradients on Potential and Resistance of the Isolated Frog Skin

机译:D2O和渗透梯度对离体蛙皮电位和抗性的影响

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Exposure of the outside surface of isolated frog skin ( R. pipiens and R. catesbeiana ) to sulfate solution made up with D2O decreased skin potential and resistance. Exposure of the inside surface to D2O solution decreased the potential slightly but increased the resistance. The changes were linearly related to the D2O concentration. Since D2O acts like a hyperosmotic solution, the skin potential and resistance were studied upon exposure to solution made hyperosmotic by addition of sucrose, mannitol, acetamide, urea, thiourea, Na2SO4, or K2SO4. Skin potential and resistance decreased when the outside solution was made hyperosmotic. The changes depended upon the concentration and the nature of the solute. Thiourea and urea solutions were the most effective. Treatment of the inside surface gave relatively small decreases in potential; the resistance either increased or remained unchanged. These effects appeared to depend upon the direction of the osmotic gradient across the skin rather than upon the value of the osmolarity compared to normal body fluids. Experiments with a series of six polyhydric alcohols from methanol to mannitol and the polysaccharides, sucrose and raffinose, showed adonitol with 5 carbons to decrease the potential the most. Smaller and larger compounds of this set gave lesser effects. As yet no consistent explanation of the effects is forthcoming, but their demonstration calls for caution in the indiscriminate use of solutes such as mannitol or sucrose "to make up the osmolality" and in the neglect of urea because "it penetrates freely."
机译:将孤立的青蛙皮(R. pipiens和R. catesbeiana)的外表面暴露于D2O组成的硫酸盐溶液中会降低皮肤电位和抵抗力。内表面暴露于D2O溶液会稍微降低电位,但会增加电阻。变化与D2O浓度线性相关。由于D2O的作用类似于高渗溶液,因此在通过添加蔗糖,甘露醇,乙酰胺,尿素,硫脲,Na2SO4或K2SO4暴露于高渗溶液中后,对皮肤的潜力和抵抗力进行了研究。将外部溶液制成高渗溶液后,皮肤电位和抵抗力下降。变化取决于溶质的浓度和性质。硫脲和尿素溶液最有效。内表面的处理使电位下降相对较小。阻力增加或保持不变。这些作用似乎取决于整个皮肤上渗透压梯度的方向,而不是与正常体液相比的渗透压值。用从甲醇到甘露醇的六种多元醇和蔗糖和棉子糖的一系列六元醇进行的实验表明,含5个碳的腺苷最多可降低电位。该组中越来越大的化合物产生的作用较小。到目前为止,尚无关于该作用的一致解释,但他们的论证要求谨慎使用诸如甘露醇或蔗糖之类的溶质以“弥补重量克分子渗透压浓度”,而由于“其自由渗透”而忽略了尿素。

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