首页> 外文期刊>Journal of Neurophysiology >Neuronal chloride accumulation in olfactory epithelium of mice lacking NKCC1.
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Neuronal chloride accumulation in olfactory epithelium of mice lacking NKCC1.

机译:缺少NKCC1的小鼠的嗅上皮中神经元氯化物的积累。

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When stimulated with odorants, olfactory receptor neurons (ORNs) produce a depolarizing receptor current. In isolated ORNs, much of this current is caused by an efflux of Cl-. This implies that the neurons have one or more mechanisms for accumulating cytoplasmic Cl- at rest. Whether odors activate an efflux of Cl- in intact olfactory epithelium, where the ionic environment is poorly characterized, has not been previously determined. In mouse olfactory epithelium, we found that >80% of the summated electrical response to odors is blocked by niflumic acid or flufenamic acid, each of which inhibits Ca2+-activated Cl- channels in ORNs. This indicates that ORNs accumulate Cl- in situ. Recent evidence has shown that NKCC1, a Na+-K+-2Cl- cotransporter, contributes to Cl- accumulation in mammalian ORNs. However, we find that the epithelial response to odors is only reduced by 39% in mice carrying a null mutation in Nkcc1. As in the wild-type, most of the response is blocked by niflumic acid or flufenamic acid,indicating that the underlying current is carried by Cl-. We conclude that ORNs effectively accumulate Cl- in situ even in the absence of NKCC1. The Cl- -transport mechanism underlying this accumulation has not yet been identified.
机译:当被气味刺激时,嗅觉受体神经元(ORN)会产生去极化的受体电流。在隔离的ORN中,大部分电流是由Cl-的流出引起的。这暗示神经元具有一种或多种在静止时积累胞质Cl-的机制。以前尚未确定气味是否会激活完整的嗅觉上皮细胞中Cl-的流出,而离子环境的特征很差。在小鼠嗅觉上皮细胞中,我们发现对气味的总电响应中> 80%被尼氟酸或氟苯那酸所阻滞,它们各自抑制ORNs中的Ca2 +激活的Cl-通道。这表明ORN在原位积累Cl-。最近的证据表明,NKCC1是一种Na + -K + -2Cl-共转运蛋白,可促进哺乳动物ORN中Cl-的积累。但是,我们发现在携带Nkcc1无效突变的小鼠中,上皮对气味的反应仅降低了39%。与野生型一样,大多数响应被尼氟酸或氟苯那酸阻滞,表明基础电流由Cl-携带。我们得出的结论是,即使在没有NKCC1的情况下,ORN也会有效地在原位积累Cl-。尚未确定这种积累基础的Cl-转运机制。

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