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储存铁动力学。VII。网状内皮系统铁转运的生物学模型。

Storage iron kinetics. VII. A biologic model for reticuloendothelial iron transport.

作者信息

Fillet G, Cook J D, Finch C A

出版信息

J Clin Invest. 1974 Jun;53(6):1527-33. doi: 10.1172/JCI107703.

Abstract

The processing of erythrocyte iron by the reticuloendothelial cell has been characterized by kinetic measurements of blood radioactivity made after the intravenous injection of heat-damaged erythrocytes labeled with (59)Fe and of transferrin-bound (55)Fe. The early reticuloendothelial release of iron, a matter of hours, was calculated from the plasma turnover rate of (55)Fe and the plasma reappearance of (59)Fe. Late release was calculated from the ratio of the cumulative incorporation of both tracers into the circulating red cell mass over a period of 2 wk. There was an initial processing period within the reticuloendothelial cell, after which radioiron either rapidly returned to circulation (t(1/2) 34 min) or was transferred to a slowly exchanging pool of storage iron within the reticuloendothelial cell (t(1/2) release to plasma of 7 days). These pathways were of equal magnitude in the normal dog. Reticuloendothelial release of iron was largely independent of the pre-existing plasma iron level or transferrin saturation. Diurnal fluctuations in the plasma iron level were shown to be the result of a variable partitioning of iron between the early and late release phases. Acute inflammation resulted in a prompt and marked increase in the fraction of iron stored (late phase), whereas depletion of iron stores resulted in a marked increase in early release.

摘要

通过对静脉注射用(59)铁标记的热损伤红细胞和转铁蛋白结合的(55)铁后进行血液放射性的动力学测量,对网状内皮细胞处理红细胞铁的过程进行了表征。铁在网状内皮细胞的早期释放(数小时内)是根据(55)铁的血浆周转率和(59)铁在血浆中的再次出现来计算的。晚期释放是根据两种示踪剂在2周内累积掺入循环红细胞群的比例来计算的。在网状内皮细胞内有一个初始处理期,在此之后,放射性铁要么迅速返回循环(半衰期34分钟),要么被转移到网状内皮细胞内一个缓慢交换的储存铁池中(释放到血浆的半衰期为7天)。在正常犬中,这些途径的量相等。网状内皮细胞释放铁在很大程度上独立于预先存在的血浆铁水平或转铁蛋白饱和度。血浆铁水平的昼夜波动被证明是铁在早期和晚期释放阶段之间可变分配的结果。急性炎症导致储存铁部分(晚期阶段)迅速且显著增加,而铁储存耗竭导致早期释放显著增加。

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