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通过 SEC-GFAAS 对血浆样品进行预处理,可实现铁金属蛋白的基线分离。

Sample preparation of blood plasma enables baseline separation of iron metalloproteins by SEC-GFAAS.

机构信息

Department of Chemistry, University of Calgary, 2500 University Drive NW, Calgary, AB T2N 1N4, Canada.

Application Division, Lumex Instruments Canada, 1-7294 Fraserview Place, Mission, B.C. V4S 0A3, Canada.

出版信息

J Chromatogr B Analyt Technol Biomed Life Sci. 2020 Jun 15;1147:122147. doi: 10.1016/j.jchromb.2020.122147. Epub 2020 May 7.

Abstract

The analysis of human plasma for biomarkers holds promise to revolutionize disease diagnosis, but is hampered by the inherent complexity of the plasma proteome. One way to overcome this problem is to analyze plasma for a sub-proteome, such as the metalloproteome. Previous studies employing size-exclusion chromatography (SEC) coupled on-line to an inductively coupled plasma-atomic emission spectrometer (ICP-AES) have revealed that plasma contains ~12 copper, iron and zinc metalloproteins. This included the iron metalloproteins transferrin (Tf) and a recently identified haptoglobin-hemoglobin (Hp-Hb) complex, which is formed in plasma when red blood cells rupture. Since this SEC-ICP-AES method required a sample volume of 500 µL to generate diagnostically useful results, we sought to develop an alternative SEC-based hyphenated approach using a smaller SEC column (150 × 5 mm I.D.) and a graphite furnace atomic absorption spectrometer (GFAAS) as the iron-specific detector. A designed interface enabled the integration of the SEC system with the GFAAS. Baseline separation between the Hp-Hb complex and Tf was achieved by developing a sample preparation procedure which involved the chelating agent-based mobilization of Fe from Tf to a small molecular weight Fe complex. Spiking of human plasma (1.0 mL) with red blood cell lysate (1-2 µL) increased only the intensity of the Fe peak corresponding to the Hp-Hb complex, but not that of Tf. Since the developed SEC-GFAAS method requires only 50 µL of plasma for analysis, it can now be employed for the cost-effective quantification of the clinically relevant Hb-Hp complex in human plasma in <50 min.

摘要

分析人类血浆中的生物标志物有望彻底改变疾病诊断,但受到血浆蛋白质组固有复杂性的阻碍。克服这个问题的一种方法是分析血浆中的亚蛋白质组,例如金属蛋白质组。先前使用尺寸排阻色谱(SEC)与电感耦合等离子体原子发射光谱仪(ICP-AES)在线联用的研究表明,血浆中含有约 12 种铜、铁和锌金属蛋白。这包括铁金属蛋白转铁蛋白(Tf)和最近鉴定的血红蛋白-血红蛋白(Hp-Hb)复合物,当红细胞破裂时,该复合物在血浆中形成。由于这种 SEC-ICP-AES 方法需要 500 μL 的样品体积才能产生具有诊断意义的结果,我们试图开发一种替代的基于 SEC 的联用方法,使用较小的 SEC 柱(150×5mm ID)和石墨炉原子吸收光谱仪(GFAAS)作为铁特异性检测器。设计的接口使 SEC 系统与 GFAAS 集成。通过开发一种样品制备程序,实现了 Hp-Hb 复合物和 Tf 之间的基线分离,该程序涉及基于螯合剂的从 Tf 中动员 Fe 到小分子 Fe 络合物。向人血浆(1.0 mL)中加入红细胞裂解液(1-2 μL)仅增加了对应于 Hp-Hb 复合物的 Fe 峰的强度,而不是 Tf 的强度。由于开发的 SEC-GFAAS 方法仅需要 50 μL 的血浆进行分析,因此现在可以在 <50 分钟内用于经济有效地定量人血浆中临床相关的 Hb-Hp 复合物。

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