Selective accumulation of potassium ion by gel and kidney slices

Philippa M. Wiggins
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引用次数: 17

Abstract

  • 1.

    1. Slices of denatured protein gels and cortical slices from the kidneys of adult rats were subjected to equivalent experimental conditions in order to determine the factors promoting selective K+ accumulation.

  • 2.

    2. The addition of polythelene glycol 6000 to the medium decreased the water content of rat kidney cortex slices at 0° and at 38°, and was used to control swelling at low concentrations of ions.

  • 3.

    3. K+ selectivity of slices of gel at 20° and of anaerobic tissue at 38° incubated in media of constant composition decreased as the water content increased.

  • 4.

    4. K+ selectivity of slices of gel at 20° and of kidney cortex incubated both at 0° and anaerobically at 38° increased as the concentrations of Na+ and K+ in the medium were decreased whilst the Na+/K+ ratio and the water content of the slices were held constant.

  • 5.

    5. K+ selectivity of slices of gel at 20° and of kidney cortex incubated anaerobically both at 38° and at 0° increased as the relative concentration of K+ in the medium decreased whilst the sum of the concentrations og Na+ and K+ in the medium and the water content of the slices were held constant.

  • 6.

    6. These results have been interpreted in terms of a model first proposed for ion- exchange resins. It has been shown that with further assumptions the model could account for the asymmetric distribution of Na+ and K+ in respiring tissue, and for the swelling, uptake of Na+ and loss of K+ that occur with anoxia at 38° or on chilling to 0°.

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凝胶和肾片对钾离子选择性积累的影响
1.1. 为了确定促进K+选择性积累的因素,采用等效的实验条件,取成年大鼠肾脏变性蛋白凝胶切片和皮质切片。在培养液中加入聚乙二醇6000可降低0°和38°时大鼠肾皮质切片的含水量,并用于控制低浓度离子下的肿胀。4.4.凝胶切片在20°和厌氧组织切片在38°等组成培养基中孵育的K+选择性随含水量的增加而降低。在20°和38°厌氧条件下培养的凝胶片和肾皮质片的K+选择性随着培养基中Na+和K+浓度的降低而增加,同时保持片的Na+/K+比和含水量不变。20°和38°和0°厌氧培养的凝胶片和肾皮质片的K+选择性随着培养基中K+的相对浓度的降低而增加,而培养基中Na+和K+浓度的总和和切片的含水量保持不变。6.6。这些结果已被解释为离子交换树脂首次提出的一个模型。研究表明,通过进一步的假设,该模型可以解释呼吸组织中Na+和K+的不对称分布,以及在38°缺氧或冷却至0°时发生的肿胀、Na+的吸收和K+的损失。
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