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人体网状内皮系统铁动力学的定量研究

Quantitation of reticuloendothelial iron kinetics in humans.

作者信息

Stefanelli M, Bentley D P, Cavill I, Roeser H P

出版信息

Am J Physiol. 1984 Nov;247(5 Pt 2):R842-9. doi: 10.1152/ajpregu.1984.247.5.R842.

Abstract

Reticuloendothelial iron kinetics were investigated in a simultaneous dual-isotope study in 10 healthy adult subjects in whom 55Fe-ferric hydroxide phosphate colloid was used to label the reticuloendothelial iron pools, and 59Fe-transferrin was used to define plasma iron kinetics. The simultaneous clearance of 55Fe and 59Fe from plasma and the uptake of each into red blood cells were measured over 14 days. The 55Fe-colloid was cleared almost immediately, and its iron was rapidly released to bind to plasma transferrin. Red cell incorporation of 55Fe was, however, much slower than that of 59Fe bound to transferrin in vitro. The data were analyzed by a new model of reticuloendothelial iron metabolism that contained two reticuloendothelial iron pools; one had a rapid turnover and donated iron to transferrin, and the other, a storage pool, had a slower turnover. The transit pool contained a mean of 164 mumol iron with little variation between subjects, whereas the storage pool was somewhat larger (mean 873 mumol iron) and showed more marked variation between subjects. In general an equal proportion of the iron leaving the transit pool went to transferrin and to the storage pool. The distribution between the two routes did not appear to be related either to plasma iron concentration, latent iron-binding capacity, or transferrin saturation.

摘要

在一项同时进行的双同位素研究中,对10名健康成年受试者的网状内皮系统铁动力学进行了研究。在这些受试者中,使用磷酸氢氧化铁胶体55Fe标记网状内皮系统铁池,并用转铁蛋白59Fe来确定血浆铁动力学。在14天内测量了55Fe和59Fe从血浆中的同时清除率以及它们各自进入红细胞的摄取率。55Fe胶体几乎立即被清除,其铁迅速释放并与血浆转铁蛋白结合。然而,体外55Fe掺入红细胞的速度比与转铁蛋白结合的59Fe慢得多。数据通过一种新的网状内皮系统铁代谢模型进行分析,该模型包含两个网状内皮系统铁池;一个周转迅速,将铁提供给转铁蛋白,另一个是储存池,周转较慢。转运池平均含有164微摩尔铁,受试者之间差异不大,而储存池稍大一些(平均873微摩尔铁),受试者之间差异更明显。一般来说,离开转运池的铁进入转铁蛋白和储存池的比例相等。两条途径之间的分布似乎与血浆铁浓度、潜在铁结合能力或转铁蛋白饱和度均无关。

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