首页> 美国卫生研究院文献>The Journal of Physiology >Fluid movements across rabbit ileum coupled to passive paracellular ion movements.
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Fluid movements across rabbit ileum coupled to passive paracellular ion movements.

机译:跨兔回肠的液体运动与被动细胞旁离子运动耦合。

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摘要

1. Theophylline (10 mM) and choleragen (1 x 10(-6) g ml.-1) abolish net fluid absorption by everted sacs of rabbit ileum. Triaminopyrimidine (20 mM) and ethacrynate (0.1 mM) prevent this inhibition of net fluid movement. Replacing Ringer Cl- with isethionate prevents the theophylline-dependent decrease in fluid absorption also. 2. Ouabain (0.1 mM) abolishes net fluid movements in both control and theophylline-treated tissue. 3. With ouabain present, hypertonic NaCl (200 mM) in the mucosal solution causes net fluid secretion (serosal-mucosal flux). With theophylline added to both the mucosal and serosal solution, net fluid absorption (mucosal-serosal flux) is observed (P less than 0.001). Triaminopyrimidine (20 mM), or ethacrynate (0.1 mM), or replacement of Ringer Na+ with choline, or Ringer Cl- with isethionate all prevent the theophylline-induced reversal of osmotic flow. 4. Theophylline increases passive net flux of Na+ and Cl- from mucosal solution containing hypertonic (200 mM) NaCl+ ouabain (0.1 mM) across sheets of ileum into serosal solution containing mannitol Ringer + ouabain. The increased passive Na+ flux is blocked by triaminopyrimidine and the increased Na+ and Cl- fluxes are blocked by ethacrynate (0.1 mM). 5. The suggested route of increased NaCl leakage is via the paracellular pathway as it is inhibited by triaminopyrimidine. The increase, itself, is a consequence of the increased passive permeability of the mucosal border to Cl-, induced by theophylline or choleragen. Water is apparently electro-osmotically coupled to the paracellular Na+ leakage (100 mole water mole-1 Na+), hence increased passive leakage reverses osmotic flow. In active tissue the lateral intercellular space contains hypertonic NaCl, and hence increased leakage of NaCl across the tight-junction in theophylline or choleragen-treated tissue gives rise to net fluid secretion.
机译:1.茶碱(10 mM)和霍乱素(1 x 10(-6)g ml.-1)消除了兔回肠外翻囊的净液体吸收。三氨基嘧啶(20 mM)和乙酸乙酯(0.1 mM)可以防止这种对净流体运动的抑制。用羟乙磺酸盐代替Ringer Cl-还可防止茶碱依赖性液体吸收的减少。 2.哇巴因(0.1 mM)消除了对照组织和茶碱处理组织中的净液体运动。 3.在存在哇巴因的情况下,粘膜溶液中的高渗NaCl(200 mM)引起净液体分泌(浆膜-粘膜通量)。将茶碱添加到粘膜和浆膜溶液中时,观察到净液体吸收(粘膜浆液通量)(P小于0.001)。 Triaminopyrimidine(20 mM)或ethacrynate(0.1 mM),或用胆碱替代Ringer Na +或用Isethionate替代Ringer Cl-,均能防止茶碱诱导的渗透流逆转。 4.茶碱增加了从含高渗(200 mM)NaCl +哇巴因(0.1 mM)的粘膜溶液中穿过回肠片层到含有甘露醇林格+哇巴因的浆膜溶液中Na +和Cl-的被动净通量。增加的被动Na +通量被三氨基嘧啶阻止,增加的Na +和Cl-通量被乙酸酯(0.1 mM)阻止。 5.建议的NaCl泄漏增加的途径是通过细胞旁途径,因为它被三氨基嘧啶抑制。这种增加本身是由茶碱或霍乱原诱导的粘膜边界对Cl-的被动渗透性增加的结果。水显然是电渗耦合到细胞旁的Na +泄漏(100摩尔水mol-1 Na +),因此被动泄漏的增加会逆转渗透流。在活动组织中,细胞外侧面空间含有高渗的氯化钠,因此,在茶碱或经霍乱素处理的组织中,氯化钠在紧密连接处的渗漏增加,导致净液体分泌。

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