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氨基酸的邻苯二甲醛-巯基乙醇衍生物的电化学活性。应用于高效液相色谱法测定血浆及其他生物材料中的氨基酸。

Electrochemical activity of o-phthalaldehyde-mercaptoethanol derivatives of amino acids. Application to high-performance liquid chromatographic determination of amino acids in plasma and other biological materials.

作者信息

Joseph M H, Davies P

出版信息

J Chromatogr. 1983 Oct 14;277:125-36.

PMID:6643598
Abstract

o-Phthalaldehyde-mercaptoethanol (OPA) reagent is used to increase the sensitivity of post-column detection of amino acids after chromatographic separation. OPA-amino acids themselves chromatograph well on reversed-phase high-performance liquid chromatographic (HPLC) columns and can be determined by fluorimetric detection, enabling OPA to be used as a pre-column derivatisation reagent. In this paper electrochemical detection (in the 0.4-0.7 V range) of OPA-amino acids following reversed-phase HPLC is described. Using fluorimetric and electrochemical detection in series, confirmation of the identities of the amino acids can be obtained in a single chromatographic run. Particular amino acids (e.g. basic amino acids) are active at the lower potentials, so that they can be selectively detected if required. Other amino acids and peptides whose OPA derivatives have little or no fluorescent activity are electroactive, permitting their detection by HPLC of their OPA derivatives. Application of this methodology to divers biological samples is illustrated. OPA derivatisation of amines is an example of a reaction in which the product is electroactive at a lower potential than the reactants. This type of reaction is likely to be particularly useful in extending the applications of electrochemical detection in HPLC.

摘要

邻苯二甲醛 - 巯基乙醇(OPA)试剂用于提高色谱分离后氨基酸柱后检测的灵敏度。OPA - 氨基酸本身在反相高效液相色谱(HPLC)柱上具有良好的色谱行为,并且可以通过荧光检测进行测定,这使得OPA能够用作柱前衍生试剂。本文描述了反相HPLC后对OPA - 氨基酸的电化学检测(在0.4 - 0.7 V范围内)。通过串联使用荧光检测和电化学检测,可以在一次色谱运行中确认氨基酸的身份。特定的氨基酸(例如碱性氨基酸)在较低电位下具有活性,因此如果需要可以进行选择性检测。其他OPA衍生物几乎没有或没有荧光活性的氨基酸和肽具有电活性,允许通过其OPA衍生物的HPLC进行检测。文中举例说明了该方法在多种生物样品中的应用。胺的OPA衍生化是一种产物在比反应物更低电位下具有电活性的反应实例。这种类型的反应在扩展HPLC中电化学检测的应用方面可能特别有用。

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