Ahmad Iqbal, Fasihullah Q, Vaid Faiyaz H M
Department of Pharmaceutical Chemistry, Faculty of Pharmacy, University of Karachi, Karachi 75270, Pakistan.
J Photochem Photobiol B. 2005 Mar 1;78(3):229-34. doi: 10.1016/j.jphotobiol.2004.11.010.
The effect of phosphate buffer on aerobic photodegradation reactions of riboflavin (RF) at pH 7.0 has been studied. The photoproducts of the two major reactions, viz., intramolecular photoreduction and intramolecular photoaddition, have been determined by a specific multicomponent spectrophotometric method. The overall photodegradation of riboflavin in the presence of phosphate buffer involves the participation of both H2PO4-and HPO4(2-) species. The second-order rate constants for the H2PO4(-)-catalysed photodegradation of riboflavin (normal photolysis) to lumichrome (LC) and HPO4(2-)-catalysed photodegradation of riboflavin (photoaddition) to cyclodehydroriboflavin (CDRF) are 0.93 x 10(-4) and 4.0 x 10(-4) M(-1) s(-1), respectively. The addition of 0.25-2.00 M phosphate to RF solutions at pH 7.0 gives rise to RF-HPO4(2-) complex and hence the quenching of 4-36% fluorescence, respectively. This results in the suppression of normal photolysis leading to the formation of LC in favour of photoaddition to yield CDRF. The present study shows the involvement of H2PO4- anions in the base-catalysed degradation of riboflavin by normal photolysis vis-a-vis the involvement of HPO42- anions in photoaddition reactions of riboflavin suggested earlier [M. Schuman Jorns, G. Schollnhammer, P. Hemmerich, Intramolecular addition of the riboflavin side chain. Anion-catalysed neutral photochemistry, Eur. J. Biochem. 57 (1975) 35-48].
研究了磷酸盐缓冲液对核黄素(RF)在pH 7.0时好氧光降解反应的影响。通过特定的多组分分光光度法测定了两个主要反应,即分子内光还原和分子内光加成的光产物。在磷酸盐缓冲液存在下,核黄素的整体光降解涉及H2PO4-和HPO4(2-)两种物种的参与。H2PO4(-)催化核黄素光降解(正常光解)生成光色素(LC)以及HPO4(2-)催化核黄素光降解(光加成)生成环脱氢核黄素(CDRF)的二级速率常数分别为0.93×10(-4)和4.0×10(-4) M(-1) s(-1)。在pH 7.0的RF溶液中加入0.25 - 2.00 M磷酸盐分别会产生RF - HPO4(2-)络合物,从而导致荧光猝灭4 - 36%。这导致正常光解受到抑制,有利于光加成生成CDRF,而不是生成LC。本研究表明,H2PO4-阴离子参与了核黄素在碱催化下通过正常光解的降解过程,而HPO42-阴离子参与了先前提出的核黄素光加成反应[M. Schuman Jorns, G. Schollnhammer, P. Hemmerich, 核黄素侧链的分子内加成。阴离子催化的中性光化学,欧洲生物化学杂志57 (1975) 35 - 48]。