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Reticulocyte transferrin receptor (TfR) expression and contribution to soluble TfR levels | Haematologica

机译:网织红细胞转铁蛋白受体(TfR)的表达及其对可溶性TfR水平的贡献|血液学

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BACKGROUND AND OBJECTIVES: Transferrin receptor (TfR) expression in erythroid cells is regulated by a number of factors, including iron status and erythropoietin (Epo) stimulation. However, the impact of these factors on reticulocyte TfR expression in vivo has never been studied. A soluble form of TfR (sTfR) is present in serum in proportion to the mass of cellular TfR. Although sTfR shedding by reticulocytes and erythroblasts has been demonstrated in vitro, the contribution of reticulocyte TfR to serum sTfR has never been evaluated in vivo. DESIGN AND METHODS: We measured directly the total number of reticulocyte TfR in normal rats of different age and iron status, as well as in animals experiencing various conditions and treatments aimed at altering erythropoietic activity and iron status, including rHuEpo therapy, hemolytic anemia, phlebotomies, hypertransfusions, thiamphenicol-induced red cell aplasia or inflammation. In addition, we examined the impact of repeated hypertransfusions with normal, reticulocyte-poor and reticulocyte-rich blood on serum sTfR levels. RESULTS: The number of TfR molecules per reticulocyte was around 50,000 in young rats but was around 100,000 in older animals. These values remained constant in most conditions and in particular were not influenced by iron supplementation or iron overload. However, functional iron deficiency as well as rHuEpo therapy resulted in increased reticulocyte TfR expression. In addition, TfR numbers in reticulocytes were elevated in the early phase of recovery after acute hemolysis or red cell aplasia but normalized soon after. Hypertransfusion experiments clearly demonstrated that reticulocytes can contribute substantially to sTfR levels in vivo. INTERPRETATION AND CONCLUSIONS: TfR numbers are regulated in vivo by the same factors as in vitro, in particular iron deficiency and erythropoietin stimulation. Circulating reticulocytes contribute significantly to serum sTfR levels.
机译:背景与目的:红细胞中转铁蛋白受体(TfR)的表达受多种因素调节,包括铁状态和促红细胞生成素(Epo)刺激。但是,尚未研究这些因素对网状细胞TfR体内表达的影响。可溶性形式的TfR(sTfR)与细胞TfR的质量成比例地存在于血清中。尽管已在体外证明网织红细胞和成红细胞释放sTfR,但从未在体内评估网织红细胞TfR对血清sTfR的贡献。设计和方法:我们直接测量了不同年龄和铁状态的正常大鼠以及经历各种旨在改变红细胞生成活性和铁状态的条件和治疗的动物中网织红细胞TfR的总数,包括rHuEpo治疗,溶血性贫血,静脉切开术,输血,甲砜霉素诱导的红细胞发育不良或炎症。此外,我们检查了正常,网织红细胞缺乏和网织红细胞丰富的血液反复超输血对血清sTfR水平的影响。结果:在幼鼠中,每个网状细胞的TfR分子数量约为50,000,而在较年长的动物中约为10万。这些值在大多数条件下保持恒定,尤其不受铁补充或铁过载的影响。然而,功能性铁缺乏症以及rHuEpo治疗导致网织红细胞TfR表达增加。此外,急性溶血或红细胞发育不全后恢复的早期,网织红细胞中的TfR数量增加,但不久后恢复正常。高输血实验清楚地表明网织细胞可以在体内显着促进sTfR水平。解释和结论:体内的TfR值受与体外相同的因素调节,尤其是铁缺乏和促红细胞生成素的刺激。循环网织红细胞显着促进血清sTfR水平。

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