Kitamura Youji, Mifune Masaki, Hino Daiki, Yokotani Saori, Saito Madoka, Tsukamoto Ikuko, Iwado Akimasa, Saito Yutaka
Department of Pharmaceutical Sciences, Graduate School of Medicine and Dentistry and Pharmaceutical Sciences, Okayama University, 1-1-1 Tsushima-Naka, Okayama, Japan.
Talanta. 2006 Mar 15;69(1):43-7. doi: 10.1016/j.talanta.2005.08.045. Epub 2005 Sep 19.
Fe- or Mn-tetrakis(4-carboxyphenyl)porphine (Fe- and Mn-TCPP) bound to aminopropyl-glass bead (Fe- and Mn-TCPP(g)s) was examined for the peroxidase (POD)-like function in order to develop a solid catalyst which can exhibit POD-like activity without adsorbing heterocyclic amines (HCAs). Mn-TCPP in aqueous solution had only a slight POD-like catalytic activity on HCAs (IQ and MeIQ). As for Fe-TCPP, it was impossible to examine the POD-like activity since it reacted with hydrogen peroxide in a liquid reaction system. However, both Fe- and Mn-TCPP when immobilized on aminopropyl-glass bead via peptide bond (Fe- and Mn-TCPP(g)s), catalyzed the oxidative reaction of mutagenic HCAs with hydrogen peroxide. The catalytic activity of Fe- and Mn-TCPP(g)s was investigated in more detail using as a substrate IQ and MeIQ which were oxidized more rapidly among the tested HCAs. Consequently, the optimal conditions for the oxidative reaction catalyzed by Fe- and Mn-TCPP(g)s were determined. In addition, ESI-mass and absorption spectra of oxidation products of IQ and MeIQ showed that they are dimers. Thus, it was demonstrated that a solid catalyst with POD-like activity can be obtained by immobilizing Fe- and Mn-TCPPs on aminopropyl-glass beads.
为了开发一种能够在不吸附杂环胺(HCA)的情况下展现出类似过氧化物酶(POD)活性的固体催化剂,对结合在氨丙基玻璃珠上的铁或锰四(4-羧基苯基)卟啉(Fe-和Mn-TCPP)的类过氧化物酶功能进行了研究。水溶液中的Mn-TCPP对HCA(IQ和MeIQ)仅具有轻微的类POD催化活性。至于Fe-TCPP,由于它在液体反应体系中会与过氧化氢发生反应,因此无法检测其类POD活性。然而,当通过肽键固定在氨丙基玻璃珠上时(Fe-和Mn-TCPP(g)s),Fe-和Mn-TCPP均能催化诱变化学杂环胺与过氧化氢的氧化反应。使用IQ和MeIQ作为底物对Fe-和Mn-TCPP(g)s的催化活性进行了更详细的研究,在测试的HCA中,IQ和MeIQ的氧化速度更快。因此,确定了由Fe-和Mn-TCPP(g)s催化的氧化反应的最佳条件。此外,IQ和MeIQ氧化产物的电喷雾质谱(ESI-质谱)和吸收光谱表明它们是二聚体。因此,已证明通过将Fe-和Mn-TCPP固定在氨丙基玻璃珠上可获得具有类POD活性的固体催化剂。