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钠浓度对蛙皮中钠含量及分布的影响。

The effect of sodium concentration on the content and distribution of sodium in the frog skin.

作者信息

Cereijido M, Reisin I, Rotunno C A

出版信息

J Physiol. 1968 May;196(1):237-53. doi: 10.1113/jphysiol.1968.sp008504.

Abstract
  1. The content and distribution of sodium in the epithelium of the frog skin (Leptodactylus ocellatus L.) have been studied.2. The inulin space, the (22)Na exchange, and the amounts of water and sodium were measured in samples of connective tissue. The results indicate that the necessary assumptions generally made to calculate the sodium and water contents of the epithelial cells as the difference between the total content in the tissue and the amounts contained in the inulin space are not valid in the frog skin.3. The mean concentration of sodium in the epithelium has been obtained from direct measurements of sodium and water in samples of epithelium. To measure the water content of the epithelium a new technique has been developed. When the skin is bathed with Ringer solution containing 115 mM-Na on both sides, the mean concentration of sodium in the epithelium is 79 mM. When the concentration of sodium in the Ringer is 1 mM the mean concentration in the epithelium is 25 mM. When the skin is bathed with Ringer with 1 mM-Na on the outside and 115 mM-Na on the inside-a situation which resembles the natural condition in the skin-the mean concentration of sodium in the epithelium is 52 mM.4. The compartmentalization of Na was studied by comparing the sodium content and the degree of exchange with (22)Na in the bathing solutions. In these experiments the skins were exposed to Ringer solutions with different concentrations of sodium, and (22)Na on one or both sides.5. The results indicate that the epithelium has a compartment of sodium which is not exchangeable in 40-80 min and whose size is not appreciably changed by a threefold change in the Na content in the epithelium and a hundredfold change in the concentration of the bathing solution.6. Sodium exchangeable in 40-80 min seems to be contained in two different compartments: (a) a large one that contains fixed sodium is mainly connected to the inside, and does not appear to participate directly in sodium transport across the frog skin; (b) a small one, that is bounded on the inside by a Na-impermeable barrier, and that seems to comprise the sodium involved in active transport. When the skin is bathed with Ringer solutions with 115 mM-Na on the inside and 1 mM-Na on the outside, the transporting compartment contains some 13% of the total sodium in the epithelium.7. The results are interpreted on the basis of a model recently proposed by Cereijido & Rotunno (1968). The major feature of this model is that the sodium transporting compartment is confined to the plasma membrane of the epithelial cells.
摘要
  1. 对青蛙皮肤(饰纹角花蟾)上皮组织中钠的含量及分布进行了研究。

  2. 测定了结缔组织样本中的菊粉空间、(22)钠交换以及水和钠的含量。结果表明,通常用于计算上皮细胞中钠和水含量的方法,即将组织中的总含量与菊粉空间中的含量之差作为上皮细胞中钠和水的含量,在青蛙皮肤中并不适用。

  3. 通过直接测量上皮组织样本中的钠和水,得出了上皮组织中钠的平均浓度。为了测量上皮组织的含水量,开发了一种新技术。当皮肤两侧均用含115 mM - 钠的林格溶液浸泡时,上皮组织中钠的平均浓度为79 mM。当林格溶液中钠的浓度为1 mM时,上皮组织中的平均浓度为25 mM。当皮肤外侧用含1 mM - 钠的林格溶液浸泡,内侧用含115 mM - 钠的林格溶液浸泡(这种情况类似于皮肤的自然状态)时,上皮组织中钠的平均浓度为52 mM。

  4. 通过比较钠含量以及与浸泡溶液中(22)钠的交换程度,研究了钠的分隔情况。在这些实验中,将皮肤暴露于不同钠浓度以及一侧或两侧含有(22)钠的林格溶液中。

  5. 结果表明,上皮组织中有一个钠分隔区,在40 - 80分钟内不可交换,其大小不会因上皮组织中钠含量三倍的变化以及浸泡溶液浓度一百倍的变化而发生明显改变。

  6. 在40 - 80分钟内可交换的钠似乎包含在两个不同的分隔区中:(a)一个较大的区,含有固定钠,主要与内侧相连,似乎不直接参与钠跨青蛙皮肤的运输;(b)一个较小的区,内侧由钠不可渗透的屏障界定,似乎包含参与主动运输的钠。当皮肤内侧用含115 mM - 钠的林格溶液浸泡,外侧用含1 mM - 钠的林格溶液浸泡时,运输分隔区约占上皮组织中总钠含量的13%。

  7. 根据Cereijido和Rotunno(1968年)最近提出的模型对结果进行了解释。该模型的主要特点是钠运输分隔区局限于上皮细胞的质膜。

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Transport and distribution of sodium across frog skin.钠在蛙皮中的转运与分布
J Physiol. 1967 Jun;190(3):481-97. doi: 10.1113/jphysiol.1967.sp008223.
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The sodium-transporting compartment of the epithelium of frog skin.蛙皮上皮细胞的钠转运区室。
J Physiol. 1974 Mar;237(3):555-71. doi: 10.1113/jphysiol.1974.sp010498.

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Acta Physiol Scand. 1960 May 25;49:74-81. doi: 10.1111/j.1748-1716.1960.tb01931.x.
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INTRACELLULAR ELECTRICAL POTENTIALS IN FROG SKIN.蛙皮中的细胞内电势
J Gen Physiol. 1965 Mar;48(4):543-57. doi: 10.1085/jgp.48.4.543.
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