Departamento de Física, Pontifícia Universidade Católica do Rio de Janeiro, 22451-900, Rio de Janeiro, Brazil.
J Fluoresc. 2011 Sep;21(5):1933-40. doi: 10.1007/s10895-011-0892-5. Epub 2011 May 15.
Formation of gold(III) complexes with the synthetic antibiotic norfloxacin (NF) was investigated in aqueous solution at pH 4.0, 7.5 and 10.6, with the ligand in cationic, zwitterionic and anionic forms, respectively. UV-Visible spectroscopy, steady state and time-resolved fluorometry were used to characterize the complexes. Binding sites, association constants and fluorescence lifetimes of the complexes were obtained. Au(3+) binding to zwitterionic NF produced a fluorescence decrease and a small red shift. Fluorescence changes as a function of Au(3+) concentration were fitted using a one-site binding model and the association constant was obtained, K(bzw) = 1.7 X 10⁵ M⁻¹. The association of Au(3+) with cationic NF was much weaker, the obtained binding constant being K(bcat) = 2.4 X 10³ M⁻¹. The Au(3+) binding site for these species involves the carboxyl group, in agreement with a much stronger association of the cation with the carboxylate anion than with the neutral acid. Association of Au(3+) with nonfluorescent anionic NF presented a clear evidence of two binding sites. The highest affinity site is the unprotonated piperazinyl group with K(bpip) ≥ 5 X 10⁷ M⁻¹ , and the low affinity site includes the carboxylate anion. The results point out to important pH dependent differences in complex formation between transition metal ions and fluoroquinolones, leading to different binding sites and association constants that change by several orders of magnitude.
在 pH 值为 4.0、7.5 和 10.6 的水溶液中,分别以阳离子、两性离子和阴离子形式研究了金(III)与合成抗生素诺氟沙星(NF)形成配合物的情况。利用紫外-可见光谱、稳态和时间分辨荧光光谱对配合物进行了表征。获得了配合物的结合部位、结合常数和荧光寿命。Au(3+)与两性离子 NF 的结合导致荧光强度降低和微小的红移。荧光强度随 Au(3+)浓度的变化符合单结合位点模型,得到了结合常数 K(bzw) = 1.7 X 10⁵ M⁻¹。Au(3+)与阳离子 NF 的结合较弱,得到的结合常数为 K(bcat) = 2.4 X 10³ M⁻¹。这些物种与 Au(3+)的结合位点涉及羧基,与阳离子与羧酸根阴离子的结合强度比与中性酸的结合强度强得多的情况一致。Au(3+)与非荧光阴离子 NF 的结合清楚地表明存在两个结合位点。与 Au(3+)结合的高亲和力位点是未质子化的哌嗪基,K(bpip)≥5 X 10⁷ M⁻¹,低亲和力位点包括羧酸盐阴离子。结果表明,过渡金属离子与氟喹诺酮类药物之间的配合物形成存在重要的 pH 依赖性差异,导致结合部位和结合常数发生变化,变化幅度可达几个数量级。