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淡水虹鳟鱼胃肠道内钙转运的体外特性研究。

In vitro characterization of calcium transport along the gastrointestinal tract of freshwater rainbow trout Oncorhynchus mykiss.

机构信息

Department of Biology, McMaster University, 1280 Main Street West, Hamilton, L8S 4K1 Canada.

出版信息

J Fish Biol. 2012 Jul;81(1):1-20. doi: 10.1111/j.1095-8649.2012.03275.x. Epub 2012 May 29.

Abstract

Using an in vitro gut-sac technique, this study examined the mechanisms of calcium (Ca) uptake along the gastrointestinal tract (GIT) of rainbow trout Oncorhynchus mykiss. Ca uptake into three different compartments (mucous-bound, mucosal epithelium and blood space) of four distinct GIT segments (stomach, anterior intestine, mid intestine and posterior intestine) was monitored after luminal exposure to 10 mM Ca saline (radiolabelled with (45) Ca). Ca transport was determined to be both time-dependent and concentration-dependent. The concentration-dependent kinetics of Ca uptake was investigated using varying luminal concentrations of Ca (1, 10, 30, 60 and 100 mM). In the blood-space compartment, Ca uptake was saturable at high Ca concentrations in the mid intestine (suggesting mediated transport), while linear uptake was found in the other gut segments. In the mucous-bound and mucosal epithelium compartments, however, saturation kinetics were found for most GIT segments, also suggesting mediated transport. Manipulation of serosal saline osmotic pressure with mannitol demonstrated that Ca uptake was not greatly affected by solvent drag. Elevated mucosal cadmium (Cd) did not appear to inhibit Ca uptake into the blood space in any of the GIT sections, and Ca uptake did not appear to be sodium dependent. Maximum transport capacities for Ca and Cd were found to be comparable between the gills and gut, but affinities were much higher at the gills (up to 3000 times).

摘要

本研究采用离体肠道套囊技术,研究了虹鳟胃肠道(GIT)中钙(Ca)吸收的机制。在腔室暴露于 10mM Ca 盐水(用(45)Ca 标记)后,监测了 Ca 进入三个不同的肠道区域(粘液结合、粘膜上皮和血液空间)的四个不同 GIT 段(胃、前肠、中肠和后肠)的吸收情况。Ca 转运是时间和浓度依赖性的。通过改变腔室中 Ca 的浓度(1、10、30、60 和 100mM)来研究 Ca 摄取的浓度依赖性动力学。在血液空间中,中肠在高 Ca 浓度下的 Ca 摄取是饱和的(表明有介导的转运),而在其他肠道段则发现线性摄取。然而,在粘液结合和粘膜上皮区室中,大多数 GIT 段的摄取动力学呈现饱和,这也表明存在介导的转运。用甘露醇操纵浆膜盐水渗透压表明,溶剂拖曳对 Ca 摄取的影响不大。升高的粘膜镉(Cd)似乎并没有抑制任何 GIT 段的血液空间中的 Ca 摄取,而且 Ca 摄取似乎不是钠离子依赖性的。在鳃和肠道之间,Ca 和 Cd 的最大转运能力相当,但亲和力在鳃上要高得多(高达 3000 倍)。

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