García-Campaña Ana M, Gámiz-Gracia Laura, Baeyens Willy R G, Alés Barrero Fermín
University of Granada, Faculty of Sciences, Department of Analytical Chemistry, Fuentenueva s/n, E-18071, Granada, Spain.
J Chromatogr B Analyt Technol Biomed Life Sci. 2003 Aug 5;793(1):49-74. doi: 10.1016/s1570-0232(03)00364-7.
An overview is presented on the power and drawbacks of the relatively unfamiliar chemiluminescence-based detection technique applied in analysis by capillary electrophoresis, for determining chemically derivatized biomolecules. Examples of the most common systems are given for many series of biologically active compounds as well as for some pharmaceuticals. The most common chemiluminescent systems include the application of peroxyoxalate ester chemiluminescence, acridinium esters, luminol and derivatives, detection based on the tris(2,2'-bipyridine)ruthenium(III) system, the huge potentials offered by direct oxidations-though often with still unelucidated reaction mechanisms-and the powerful area of bioluminescence techniques, revealing as well the fast developing area of microchip-based analysis employing this specific luminescence principle.
本文概述了一种相对不太熟悉的基于化学发光的检测技术在毛细管电泳分析中用于测定化学衍生生物分子的优势和缺点。给出了许多系列生物活性化合物以及一些药物的最常见体系的实例。最常见的化学发光体系包括过氧草酸酯化学发光的应用、吖啶酯、鲁米诺及其衍生物、基于三(2,2'-联吡啶)钌(III)体系的检测、直接氧化提供的巨大潜力(尽管反应机制往往仍不明确)以及生物发光技术的强大领域,同时也揭示了采用这种特定发光原理的基于微芯片分析的快速发展领域。