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Control of water content of respiring kidney slices by sodium chloride and polyethylene glycol

机译:用氯化钠和聚乙二醇控制呼吸道肾脏切片的水分

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1. Cortical slices from kidneys of adult rats were incubated for 1 and 2 hr at 25 °C in oxygenated solutions containing 5 mM-K, 2·5 mM-Ca and Mg, 0·007 M-phosphate buffer (pH 7·4) and 5 mM-glucose, together with 1, 2, 4 and 6% polyethylene glycol (PEG 6000) and 46, 92, 123, 154 and 231 mM-NaCl.2. There were no significant differences in water content between slices incubated for 1 and for 2 hr.3. The slices contained more water when the concentration either of NaCl or of PEG 6000 was lower.4. Larger increases in the contribution of NaCl to total osmolarity were required to prevent increases in water content accompanying relatively small reductions in the contribution of PEG 6000. At a physiological salt concentration around 300 m-osmole/l., it took 10 m-osmole/l. of additional NaCl to compensate for the loss of 1 m-osmole/l. PEG 6000 and keep the volume of cell water normal.5. The much greater contribution, osmole for osmole, which PEG 6000 made to tonicity suggests that metabolic activity failed to make the cell membranes effectively semipermeable; they were still substantially permeable to NaCl.6. Comparison with earlier results suggested that ionic strength affected colloid osmolarity similarly in respiring and in non-metabolizing cells; and that respiration at 25 °C somehow kept the concentration of diffusible solutes in the cells sufficiently lower than outside to compensate for a swelling effect of intracellular colloid osmolarity which, in the absence of metabolism, could be balanced by 20 m-osmole/l. PEG 6000 added to the medium.
机译:1.将成年大鼠肾脏的皮质切片在含5 mM-K,2·5 mM-Ca和Mg,0·007 M磷酸盐缓冲液(pH 7·4)的含氧溶液中于25°C孵育1和2小时。 )和5 mM葡萄糖,以及1,2,2,4和6%聚乙二醇(PEG 6000)以及46、92、123、154和231 mM-NaCl.2。孵育1小时和2小时的切片之间的含水量没有显着差异3。当NaCl或PEG 6000的浓​​度较低时,切片含有更多的水。4。为了防止伴随PEG 6000贡献的相对较小减少的水分含量的增加,需要增加NaCl对总渗透压的贡献。在300 m-osmole / l的生理盐浓度下,它消耗了10 m-osmole / l。补充氯化钠以补偿1 m-osmole / l的损失。 PEG 6000并保持细胞水量正常5。渗透压对渗透压的贡献更大,PEG 6000对渗透压的贡献表明,代谢活性未能使细胞膜有效地半渗透。它们仍然对NaCl.6基本上具有渗透性。与早期结果的比较表明,离子强度在呼吸细胞和非代谢细胞中对胶体渗透压的影响相似。并且在25°C的温度下进行的呼吸以某种方式使细胞中的弥散性溶质浓度充分低于外部,以补偿细胞内胶体渗透压的溶胀作用,在没有代谢的情况下,可以通过20 m-osmole / l进行平衡。将PEG 6000添加至培养基。

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