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血清可溶性转铁蛋白受体浓度是组织受体质量的准确估计值。

Serum soluble transferrin receptor concentration is an accurate estimate of the mass of tissue receptors.

作者信息

R'zik S, Beguin Y

机构信息

Department of Medicine, Division of Hematology, University of Liège, Liège, Belgium.

出版信息

Exp Hematol. 2001 Jun;29(6):677-85. doi: 10.1016/s0301-472x(01)00641-5.

Abstract

OBJECTIVE

Serum levels of the soluble transferrin receptor (sTfR) vary depending on the erythropoietic activity and iron status. In vitro, sTfR shed in the incubation medium correlates well with cellular TfR, but this relationship has never been established in vivo. To determine the value of serum sTfR as a quantitative marker of the body mass of tissue TfR, we designed experiments to examine the correlation between serum sTfR and tissue TfR in rats with various degrees of erythropoietic activity or iron status.

MATERIALS AND METHODS

We studied changes in erythropoietic activity in normal rats as well as in animals experiencing hemolysis, phlebotomy-induced iron deficiency, transfusion- or thiamphenicol-induced erythroid aplasia, or inflammation. At the end of follow-up, ferrokinetic studies were performed and animals were sacrificed. Organs were isolated and homogenized to determine the total mass of tissue TfR from the sum of tissue solubilized TfR in the bone marrow, spleen, liver, and blood cells (direct method). An indirect method was developed to derive the corporeal mass of tissue TfR from a representative marrow sample.

RESULTS

As expected, serum sTfR and total mass of tissue TfR varied as a function of iron status and erythropoiesis. Relative erythroid expansion in the spleen was greater than in the bone marrow. With the exception of phlebotomized animals, the indirect method correlated very well with direct measurements of the total mass of tissue TfR (r = 0.97, p < 0.0001). There was a close relationship between the total mass of tissue TfR and the total mass of serum sTfR (r = 0.79, p < 0.0001). Serum sTfR represented approximately 5-6% of the total mass of tissue TfR in most experimental situations, but this ratio was twice as high during iron-restricted erythropoiesis. In addition, the ratio could be higher or lower in nonsteady-state situations, because changes in tissue TfR occurred faster than those of serum sTfR.

CONCLUSIONS

Serum sTfR represents a constant proportion of the total mass of tissue TfR over a wide range of erythropoietic activity. However, iron deficiency results in a higher proportion of serum sTfR, and the pace of change in serum sTfR levels is slower than that of tissue TfR mass.

摘要

目的

可溶性转铁蛋白受体(sTfR)的血清水平因红细胞生成活性和铁状态而异。在体外,孵育培养基中释放的sTfR与细胞转铁蛋白受体(TfR)密切相关,但这种关系在体内尚未得到证实。为了确定血清sTfR作为组织TfR体量定量标志物的价值,我们设计了实验来研究不同程度红细胞生成活性或铁状态大鼠的血清sTfR与组织TfR之间的相关性。

材料与方法

我们研究了正常大鼠以及经历溶血、放血诱导的缺铁、输血或甲砜霉素诱导的红系发育不全或炎症的动物的红细胞生成活性变化。随访结束时,进行铁动力学研究并处死动物。分离器官并匀浆,通过骨髓、脾脏、肝脏和血细胞中可溶性组织TfR的总和来确定组织TfR的总质量(直接法)。开发了一种间接方法,从代表性骨髓样本中得出组织TfR的总体质量。

结果

正如预期的那样,血清sTfR和组织TfR的总质量随铁状态和红细胞生成而变化。脾脏中相对红系扩张大于骨髓。除放血动物外,间接法与组织TfR总质量的直接测量结果相关性非常好(r = 0.97,p < 0.0001)。组织TfR的总质量与血清sTfR的总质量之间存在密切关系(r = 0.79,p < 0.0001)。在大多数实验情况下,血清sTfR约占组织TfR总质量的5 - 6%,但在铁限制的红细胞生成过程中,这一比例是前者的两倍。此外,在非稳态情况下,该比例可能更高或更低,因为组织TfR的变化比血清sTfR的变化更快。

结论

在广泛的红细胞生成活性范围内,血清sTfR占组织TfR总质量的比例恒定。然而,缺铁会导致血清sTfR比例更高,且血清sTfR水平的变化速度比组织TfR质量的变化速度慢。

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