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使用液相色谱串联质谱法对人血清和小鼠血清中的铁调素进行定量分析。

Quantitation of hepcidin from human and mouse serum using liquid chromatography tandem mass spectrometry.

作者信息

Murphy Anthony T, Witcher Derrick R, Luan Peng, Wroblewski Victor J

机构信息

Department of Drug Disposition Bioproducts, Lilly Research Laboratories, Lilly Corporate Center, Indianapolis, IN 46285, USA.

出版信息

Blood. 2007 Aug 1;110(3):1048-54. doi: 10.1182/blood-2006-11-057471. Epub 2007 Apr 13.

Abstract

The hepatic peptide hormone hepcidin is considered the central regulator of iron metabolism. Characterizing the circulating levels of this peptide is critical to understanding its role in the development of clinically relevant syndromes, such as anemia of inflammation/chronic disease, and may provide insight into potential clinical interventions. While quantitative methods have been published for the determination of urinary hepcidin and serum prohepcidin, no definitive methods have been published for the determination of hepcidin in serum. In this report, we describe a quantitative method for the determination of both human and mouse hepcidin in serum and plasma. The method employs protein precipitation and solid-phase extraction followed by liquid chromatographic separation and tandem mass spectrometry detection. The method has a quantitative range of 0.25 ng/mL to 500 ng/mL serum for mouse hepcidin and 1 ng/mL to 500 ng/mL serum for human hepcidin. The method uses small sample volumes (50 microL for mice and 100 microL for humans) and 96-well formats for rapid sample processing. The method was used to establish baseline serum and plasma concentrations of hepcidin in normal C57Bl/6 mice and healthy human volunteers.

摘要

肝脏肽激素铁调素被认为是铁代谢的核心调节因子。确定这种肽的循环水平对于理解其在临床相关综合征(如炎症性贫血/慢性病贫血)发展中的作用至关重要,并且可能为潜在的临床干预提供见解。虽然已经发表了测定尿铁调素和血清铁调素原的定量方法,但尚未发表用于测定血清中铁调素的权威方法。在本报告中,我们描述了一种测定血清和血浆中人和小鼠铁调素的定量方法。该方法采用蛋白质沉淀和固相萃取,随后进行液相色谱分离和串联质谱检测。该方法对小鼠铁调素的定量范围为血清0.25 ng/mL至500 ng/mL,对人铁调素的定量范围为血清1 ng/mL至500 ng/mL。该方法使用小样本量(小鼠50微升,人100微升)和96孔板形式进行快速样本处理。该方法用于确定正常C57Bl/6小鼠和健康人类志愿者中铁调素的基线血清和血浆浓度。

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