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氯离子对山羊和绵羊瘤胃上皮pH微环境及电中性Na⁺吸收的影响。

Effect of chloride on pH microclimate and electrogenic Na+ absorption across the rumen epithelium of goat and sheep.

作者信息

Leonhard-Marek S, Breves G, Busche R

机构信息

Department f Physiology, School of Veterinary Medicine, Hannover, Germany.

出版信息

Am J Physiol Gastrointest Liver Physiol. 2006 Aug;291(2):G246-52. doi: 10.1152/ajpgi.00419.2005. Epub 2006 Feb 16.

Abstract

Active Na+ absorption across rumen epithelium comprises Na+/H+ exchange and a nonselective cation conductance (NSCC). Luminal chloride is able to stimulate Na+ absorption, which has been attributed to an interaction between Cl-/HCO3- and Na+/H+ exchangers. However, isolated rumen epithelial cells also express a Cl- conductance. We investigated whether Cl- has an additional effect on electrogenic Na+ absorption via NSCC. NSCC was estimated from short-circuit current (Isc) across epithelia of goat and sheep rumen in Ussing chambers. Epithelial surface pH (pHs) was measured with 5-N-hexadecanoyl-aminofluorescence. Membrane potentials were measured with microelelectrodes. Luminal, but not serosal, Cl- stimulated the Ca2+ and Mg2+ sensitive Isc. This effect was independent of the replacing anion (gluconate or acetate) and of the presence of bicarbonate. The mean pHs of rumen epithelium amounted to 7.47 +/- 0.03 in a low-Cl- solution. It was increased by 0.21 pH units when luminal Cl- was increased from 10 to 68 mM. Increasing mucosal pH from 7.5 to 8.0 also increased the Ca2+ and Mg2+ sensitive Isc and transepithelial conductance and reduced the fractional resistance of the apical membrane. Luminal Cl- depolarized the apical membrane of rumen epithelium. 5-Nitro-2-(3-phenylpropylamino)-benzoate reduced the divalent cation sensitive Isc, but only in low-Cl- solutions. The results show that luminal Cl- can increase the microclimate pH via apical Cl-/HCO3- or Cl-/OH- exchangers. Electrogenic Na+ absorption via NSCC increases with pH, explaining part of the Cl- effects on Na+ absorption. The data further show that the Cl- conductance of rumen epithelium must be located at the basolateral membrane.

摘要

瘤胃上皮细胞对钠离子的主动吸收包括钠离子/氢离子交换和非选择性阳离子电导(NSCC)。管腔氯离子能够刺激钠离子吸收,这归因于氯离子/碳酸氢根离子与钠离子/氢离子交换体之间的相互作用。然而,分离的瘤胃上皮细胞也表达氯离子电导。我们研究了氯离子是否通过NSCC对电生性钠离子吸收有额外影响。通过乌斯安室中山羊和绵羊瘤胃上皮的短路电流(Isc)来估算NSCC。用5-N-十六烷酰-氨基荧光法测量上皮表面pH值(pHs)。用微电极测量膜电位。管腔氯离子而非浆膜氯离子刺激了对钙离子和镁离子敏感的Isc。这种作用与替代阴离子(葡萄糖酸盐或醋酸盐)以及碳酸氢根离子的存在无关。在低氯溶液中,瘤胃上皮的平均pHs为7.47±0.03。当管腔氯离子浓度从10 mM增加到68 mM时,pHs增加了0.21个pH单位。将黏膜pH从7.5提高到8.0也增加了对钙离子和镁离子敏感的Isc以及跨上皮电导,并降低了顶端膜的分数电阻。管腔氯离子使瘤胃上皮的顶端膜去极化。5-硝基-2-(3-苯丙基氨基)-苯甲酸降低了对二价阳离子敏感的Isc,但仅在低氯溶液中。结果表明,管腔氯离子可通过顶端氯离子/碳酸氢根离子或氯离子/氢氧根离子交换体提高微环境pH值。通过NSCC的电生性钠离子吸收随pH值增加,这解释了氯离子对钠离子吸收影响的部分原因。数据进一步表明,瘤胃上皮的氯离子电导必定位于基底外侧膜。

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