Nagoshi Toshimasa, Ohno Osamu, Kotake Tomohiko, Igarashi Shukuro
Department of Materials Science, Faculty of Engineering, Ibaraki University, Nakanarusawa, Hitachi 316-8511, Japan.
Luminescence. 2005 Nov-Dec;20(6):401-4. doi: 10.1002/bio.862.
The iron-chlorophyllin complex was found to be chemiluminescent (CL) in an acetonitrile (22%)/water mixed solvent. In the presence of hydrogen peroxide, when iron-chlorophyllin was added to the mixed solvent, a sharp CL signal immediately appeared. Also, analysis of the absorption spectra revealed decomposition of iron-chlorophyllin (based on decrease in absorbance at 396 nm), hence iron-chlorophyllin is the CL substance. Moreover, the CL intensity decreased in the presence of potassium thiocyanate (KSCN), indicating that the axial coordinative position of iron-chlorophyllin acts as a point of catalytic activation. In addition, when fluorophores were present with iron-chlorophyllin CL, their CL intensity values were similar to or greater than that of the well-known trichlorophenylperoxalate ester (TCPO) CL. Thus, during the decomposition reaction of iron-chlorophyllin, the latter transfers its energy to the coexisting fluorophores. Moreover, since the decomposed compound in this CL reaction had a fluorescence, it was found that the iron-chlorophyllin also functions as an energy donor. Therefore, the iron-chlorophyllin complex acts not only as a CL substance, but also as a catalyst and energy donor in the reaction.
铁叶绿酸复合物在乙腈(22%)/水混合溶剂中被发现具有化学发光(CL)特性。在过氧化氢存在的情况下,当向混合溶剂中加入铁叶绿酸时,会立即出现尖锐的CL信号。此外,对吸收光谱的分析表明铁叶绿酸发生了分解(基于396nm处吸光度的降低),因此铁叶绿酸是CL物质。而且,在硫氰酸钾(KSCN)存在时CL强度降低,这表明铁叶绿酸的轴向配位位置充当催化活化点。另外,当荧光团与铁叶绿酸CL共存时,它们的CL强度值与著名的三氯苯基草酸酯(TCPO)CL相似或更高。因此,在铁叶绿酸的分解反应过程中,后者将其能量转移给共存的荧光团。此外,由于该CL反应中的分解化合物具有荧光,发现铁叶绿酸还充当能量供体。所以,铁叶绿酸复合物不仅作为CL物质,还在反应中充当催化剂和能量供体。