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Analytical method development for selenium-containing proteins of clinical interest.

机译:具有临床意义的含硒蛋白的分析方法开发。

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摘要

The role of metallo-proteins in the body and their speciation is of increasing interest in clinical diagnostics because it is well recognized that their properties, function, and regulation in metabolic processes are highly species dependent. Therefore, their use as health markers for in vitro diagnostic, medical care and nutrition is directly related to their biological role. Selenium-containing proteins are important examples of speciation related health-indicators. In this work, significant progress has been made on the development of analytical methods for the speciation of selenoproteins in serum. A complete two-dimensional chromatographic separation of the different species of selenium-containing proteins of clinical interest including albumin, glutathione peroxidase and selenoprotein P is presented. Metal (Co 2+) chelate affinity high performance liquid chromatography (HPLC) was used to extract the proteins from serum, replacing the traditional low-pressure chromatography. Reversed phase chromatography was used for desalting and further separating selenoprotein fractions. The selenoproteins were identified by a combination of UV detection at 280 nm, selenium measurement by DRC-ICP-MS, and peptide mapping and molecular mass determination by MALDI-MS. Quantification of selenium in the selenium-containing protein species was accomplished using HPLC-UV-DRC-ICP-MS analysis employing 82Se stable isotope dilution. The sample was partially digested on line after separation, with nitric acid, using a novel in house designed interface (IRIS Digester-Evaporator, for which a patent has been applied). This interface reduces nitric acid and organic solvent from the liquid flow, and permits direct connection to the DRC-ICP-MS sample introduction system. It is a choice for HPLC-ICP-MS application or for faster on-line sample preparation for ICP and FAAS systems. The 2D chromatography, particularly the IMAC was the major source of variability in the overall method.
机译:在临床诊断中,金属蛋白在人体及其形态中的作用越来越受到关注,因为众所周知,它们在代谢过程中的特性,功能和调节高度依赖物种。因此,它们作为用于体外诊断,医疗和营养的健康标志物的用途与其生物学作用直接相关。含硒蛋白是与物种形成有关的健康指标的重要例子。在这项工作中,在血清中硒蛋白形态分析方法的开发上已取得重大进展。提出了具有临床意义的含硒蛋白质的不同种类的完整二维色谱分离方法,包括白蛋白,谷胱甘肽过氧化物酶和硒蛋白P。金属(Co 2+)螯合亲和力高效液相色谱(HPLC)用于从血清中提取蛋白质,替代了传统的低压色谱。反相色谱法用于脱盐和进一步分离硒蛋白组分。通过结合在280 nm处的紫外线检测,通过DRC-ICP-MS进行硒测量以及通过MALDI-MS进行肽谱分析和分子量测定相结合来鉴定硒蛋白。使用HPLC-UV-DRC-ICP-MS分析(采用82Se稳定同位素稀释)完成了含硒蛋白质物种中硒的定量分析。样品分离后在线使用内部设计的新型界面(IRIS Digester-Evaporator,已申请专利)用硝酸部分消化。该接口减少了液体流中的硝酸和有机溶剂,并允许直接连接到DRC-ICP-MS样品引入系统。它是HPLC-ICP-MS应用的选择,或者是ICP和FAAS系统更快的在线样品制备的选择。二维色谱法,特别是IMAC是整个方法变异性的主要来源。

著录项

  • 作者

    Arce-Osuna, Mariana.;

  • 作者单位

    University of Massachusetts Amherst.;

  • 授予单位 University of Massachusetts Amherst.;
  • 学科 Chemistry Analytical.; Chemistry Biochemistry.
  • 学位 Ph.D.
  • 年度 2005
  • 页码 109 p.
  • 总页数 109
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;生物化学;
  • 关键词

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