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描述摇蚊沿肠道、马氏管和肛乳突的镉和钙通量。

Characterization of cadmium and calcium fluxes along the gut, malpighian tubules, and anal papillae of the dipteran Chironomus riparius.

机构信息

Department of Biology, McMaster University, Hamilton, Ontario, Canada.

出版信息

Environ Toxicol Chem. 2018 Oct;37(10):2542-2549. doi: 10.1002/etc.4211. Epub 2018 Sep 3.

DOI:10.1002/etc.4211
PMID:29920766
Abstract

Chironomids are often one of the dominant organisms in significantly polluted freshwater. Many invertebrate studies have characterized whole-organism mechanisms of toxicity, for example, assessing cadmium (Cd) uptake via calcium (Ca) channels. However, with the use of the scanning ion-selective electrode technique and an innovative Cd-selective microelectrode, we analyze this relationship at the organ level using a realistic concentration of Cd and Ca in the hemolymph (blood). Generally, Cd fluxes follow the same directional pattern as Ca, although Ca fluxes are approximately 5 times higher than those of Cd. These results correlate well with previous studies indicating that chironomids have a higher affinity for Ca over Cd, which affords them tolerance to Cd toxicity. When saline Ca concentration was increased to 10 times physiological levels, Cd fluxes from the gut lumen into the cells of the midgut regions were reduced by 50 to 80%. Transport of Cd from hemolymph to tissue for the posterior midgut, Malpighian tubule, and proximal ceca was also reduced by approximately 50%. The present results indicate that Cd fluxes into or across the gut and Malpighian tubules are reduced by high Ca, suggesting that Cd may be transported in some cells by similar mechanisms. However, Cd was actively excreted at the anal papillae after a 48-h waterborne exposure to Cd, but this process was independent of Ca and instead may involve a P-glycoprotein-related pump to detoxify Cd. Environ Toxicol Chem 2018;37:2542-2549. © 2018 SETAC.

摘要

摇蚊通常是受污染淡水环境中的优势生物之一。许多无脊椎动物研究都描述了整体生物毒性机制,例如通过钙(Ca)通道评估镉(Cd)的摄取。但是,我们使用扫描离子选择性电极技术和创新的 Cd 选择性微电极,在血淋巴(血液)中使用真实的 Cd 和 Ca 浓度在器官水平上分析了这种关系。通常,Cd 通量遵循与 Ca 相同的方向模式,尽管 Ca 通量大约是 Cd 的 5 倍。这些结果与先前的研究很好地相关,表明摇蚊对 Ca 的亲和力高于 Cd,这使它们对 Cd 毒性具有耐受性。当盐水 Ca 浓度增加到生理水平的 10 倍时,从中肠腔到中肠区域细胞的 Cd 通量减少了 50%至 80%。从血淋巴到后中肠、马氏管和近端盲囊的 Cd 向组织的转运也减少了约 50%。目前的结果表明,高 Ca 会降低 Cd 穿过肠和马氏管的通量,这表明 Cd 可能通过类似的机制在某些细胞中运输。然而,在 48 小时的 Cd 水暴露后,Cd 会在肛门瓣处被主动排泄,但该过程不依赖于 Ca,而是可能涉及与 P-糖蛋白相关的泵来解毒 Cd。Environ Toxicol Chem 2018;37:2542-2549. © 2018 SETAC.

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