Gutschow Patrick, Schmidt Paul J, Han Huiling, Ostland Vaughn, Bartnikas Thomas B, Pettiglio Michael A, Herrera Carolina, Butler James S, Nemeth Elizabeta, Ganz Tomas, Fleming Mark D, Westerman Mark
Intrinsic LifeSciences, LLC, La Jolla, CA.
Department of Pathology, Boston Children's Hospital and Harvard Medical School, Boston, MA.
Haematologica. 2015 Feb;100(2):167-77. doi: 10.3324/haematol.2014.116723. Epub 2014 Nov 25.
Mice have been essential for distinguishing the role of hepcidin in iron homeostasis. Currently, investigators monitor levels of murine hepatic hepcidin-1 mRNA as a surrogate marker for the bioactive hepcidin protein itself. Here, we describe and validate a competitive, enzyme-linked immunosorbent assay that quantifies hepcidin-1 in mouse serum and urine. The assay exhibits a biologically relevant lower limit of detection, high precision, and excellent linearity and recovery. We also demonstrate correlation between serum and urine hepcidin-1 values and validate the competitive enzyme-linked immunosorbent assay by analyzing plasma hepcidin response of mice to physiological challenges, including iron deficiency, iron overload, acute blood loss, and inflammation. Furthermore, we analyze multiple murine genetic models of iron dysregulation, including β-thalassemia intermedia (Hbb(th3/+)), hereditary hemochromatosis (Hfe(-/-), Hjv(-/-), and Tfr2(Y245X/Y245X)), hypotransferrinemia (Trf(hpx/hpx)), heterozygous transferrin receptor 1 deficiency (Tfrc(+/-)) and iron refractory iron deficiency anemia (Tmprss6(-/-) and Tmprss6(hem8/hem8)). Novel compound iron metabolism mutants were also phenotypically characterized here for the first time. We demonstrate that serum hepcidin concentrations correlate with liver hepcidin mRNA expression, transferrin saturation and non-heme liver iron. In some circumstances, serum hepcidin-1 more accurately predicts iron parameters than hepcidin mRNA, and distinguishes smaller, statistically significant differences between experimental groups.
小鼠对于区分铁调素在铁稳态中的作用至关重要。目前,研究人员监测小鼠肝脏铁调素-1 mRNA水平,将其作为生物活性铁调素蛋白本身的替代标志物。在此,我们描述并验证了一种竞争性酶联免疫吸附测定法,该方法可定量小鼠血清和尿液中的铁调素-1。该测定法具有生物学相关的较低检测限、高精度、出色的线性和回收率。我们还证明了血清和尿液中铁调素-1值之间的相关性,并通过分析小鼠对生理挑战(包括缺铁、铁过载、急性失血和炎症)的血浆铁调素反应,验证了竞争性酶联免疫吸附测定法。此外,我们分析了多种铁代谢失调的小鼠遗传模型,包括中间型β地中海贫血(Hbb(th3/+))、遗传性血色素沉着症(Hfe(-/-)、Hjv(-/-)和Tfr2(Y245X/Y245X))、低转铁蛋白血症(Trf(hpx/hpx))、杂合型转铁蛋白受体1缺乏症(Tfrc(+/-))以及铁难治性缺铁性贫血(Tmprss6(-/-)和Tmprss6(hem8/hem8))。新型复合铁代谢突变体在此也首次进行了表型特征分析。我们证明血清铁调素浓度与肝脏铁调素mRNA表达、转铁蛋白饱和度和非血红素肝脏铁相关。在某些情况下,血清铁调素-1比铁调素mRNA更准确地预测铁参数,并能区分实验组之间较小的、具有统计学意义的差异。