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首页> 外文期刊>International journal of hematology >Transport of iron chelators and chelates across MDCK cell monolayers: implications for iron excretion during chelation therapy.
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Transport of iron chelators and chelates across MDCK cell monolayers: implications for iron excretion during chelation therapy.

机译:铁螯合剂和螯合剂跨MDCK细胞单层的转运:对螯合疗法中铁排泄的影响。

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摘要

Iron chelators are effective at removing iron from the body in iron overload, but little is known about the handling of iron chelates by the kidney. We studied the transport of deferoxamine, deferasirox, and three hydroxypyridones, and their iron chelates, in polarized renal epithelial MDCK cells growing on Transwell inserts. Directional iron efflux was also studied in (59)Fe-loaded cells. The chelators were transported at comparable rates in the apical and basolateral directions and moved faster than their corresponding chelates, except for deferoxamine, which did not move from the basolateral to the apical side. In contrast, the chelates were transported faster in the apical-to-basolateral direction. More permeable chelators were more efficient at removing iron from iron-loaded cells compared with deferoxamine. Iron is preferentially removed from the basolateral side, and kinetic modeling suggests facilitated diffusion of chelates in some cases. Basolateral iron efflux is temperature-dependent and partially sensitive to ATP depletion. Polarized transport of chelates suggests the kidney may be involved in reabsorption of iron bound to chelators, with a temperature-sensitive facilitated removal of some iron complexes from the basolateral side. Further studies are warranted to determine if these processes may contribute to the observed nephrotoxicity of some iron chelators.
机译:铁螯合剂在铁超载时能有效地从体内清除铁,但对肾脏处理铁螯合物的了解却很少。我们研究了在Transwell插入片段上生长的极化肾上皮MDCK细胞中去铁胺,去铁胺和三种羟基吡啶酮及其铁螯合物的运输。还研究了(59)Fe加载细胞中的定向铁外流。螯合剂以可比的速率在顶和基底外侧方向上运输,并且比相应的螯合物移动得更快,除了去铁胺没有从基底外侧移动到顶侧。相反,螯合物沿顶尖到基底外侧的方向运输更快。与去铁胺相比,渗透性更强的螯合剂从载铁细胞中去除铁更有效。优先从基底外侧去除铁,动力学模型表明在某些情况下促进了螯合物的扩散。基底外侧铁的流出取决于温度,并且对ATP消耗部分敏感。螯合剂的极化运输表明肾脏可能参与结合螯合剂的铁的重吸收,并且对温度敏感,有助于从基底外侧清除某些铁配合物。有必要进行进一步的研究,以确定这些过程是否可能导致某些铁螯合剂的肾毒性。

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