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首页> 外文期刊>The Journal of Experimental Biology >Localization of K+, H+, Na+ and Ca2+ fluxes to the excretory pore in Caenorhabditis elegans: application of scanning ion-selective microelectrodes
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Localization of K+, H+, Na+ and Ca2+ fluxes to the excretory pore in Caenorhabditis elegans: application of scanning ion-selective microelectrodes

机译:K +,H +,Na +和Ca2 +通量的定位到Caenorhabditis elegans中的排泄孔隙:扫描离子选择性微电极的应用

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Although Caenorhabditis elegans is commonly used as a model organism for studies of cell biology, development and physiology, the small size of the worm has impeded measurements of ion transport by the excretory cell and hypodermis. Here, we use the scanning ion-selective microelectrode technique to measure efflux and influx of K+, H+, Na+ and Ca2+ in intact worms. Transport of ions into, or out of, immobilized worms produces small gradients in ion concentration in the unstirred layer near the surface of the worm. These gradients are readily detectable with ion-selective microelectrodes and the corresponding ion fluxes can be estimated using the Fick equation. Our data show that effluxes of K+, H+, Na+ and Ca2+ are localized to the region of the excretory pore, consistent with release of these ions from the excretory cell, and that effluxes increase after experimental preloading with Na+, K+ or Ca2+. In addition, the hypodermis is a site of Na+ influx.
机译:虽然CaenorhabditiseDellys常用为用于研究细胞生物学,发育和生理学的模型生物体,但蠕虫的小尺寸受到放射细胞和皮下注射的离子输送的测量。 在这里,我们使用扫描离子选择性微电极技术测量完整蠕虫中K +,H +,Na +和Ca2 +的Efflux和流入。 将离子传输到或脱离,固定的蠕虫在蠕虫表面附近的未误解层中产生小梯度。 使用离子选择性微电极易于检测这些梯度,并且可以使用Fick等式估计相应的离子熔融。 我们的数据表明,K +,H +,Na +和Ca2 +的流出局部地定位于排泄孔的区域,与来自排泄细胞的这些离子的释放一致,并且在用Na +,K +或Ca2 +进行实验预加载后的渗透率增加。 此外,Hypodermis是Na +流入的部位。

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