Olea-Azar Claudio, Rigol Carolina, Mendizabal Fernando, Morello Antonio, Maya Juan Diego, Moncada Claudio, Cabrera Eliana, Di Maio Rossana, González Mercedes, Cerecetto Hugo
Department of Inorganic and Analytical Chemistry, Faculty of Chemical and Pharmaceutical Sciences, University of Chile, P.O. Box 233, Santiago 1, Chile.
Free Radic Res. 2003 Sep;37(9):993-1001.
Electron spin resonance (ESR) spectra of radicals obtained from two analogues of the antiprotozoal drug nifurtimox by electrolytic and Trypanosoma cruzi reduction were analyzed. The electrochemistry of these compounds was studied using cyclic voltammetry. STO 3-21G ab initio and INDO molecular orbital calculations were performed to obtain the optimized geometries and spin distribution, respectively. The antioxidant effect of glutathione on the nitroheterocycle radical was evaluated. DMPO spin trapping was used to investigate the possible formation of free radicals in the trypanosome microsomal system. Nitro1 and Nitro2 nitrofuran analogues showed better antiparasitic activity than nifurtimox. Nitro2 produced oxygen redox cycling in T. cruzi epimastigotes. The ESR signal intensities were consistent with the trapping of either the hydroxyl radical or the Nitro2 analogue radicals. These results are in agreement with the biological observation that Nitro2 showed anti-Chagas activity by an oxidative stress mechanism.
分析了通过电解和克氏锥虫还原从抗寄生虫药物硝呋莫司的两种类似物获得的自由基的电子自旋共振(ESR)光谱。使用循环伏安法研究了这些化合物的电化学性质。分别进行了STO 3-21G从头算和INDO分子轨道计算,以获得优化的几何结构和自旋分布。评估了谷胱甘肽对硝基杂环自由基的抗氧化作用。使用DMPO自旋捕获法研究锥虫微粒体系统中自由基的可能形成。Nitro1和Nitro2硝基呋喃类似物显示出比硝呋莫司更好的抗寄生虫活性。Nitro2在克氏锥虫前鞭毛体中产生氧氧化还原循环。ESR信号强度与羟基自由基或Nitro2类似物自由基的捕获一致。这些结果与Nitro2通过氧化应激机制显示抗恰加斯病活性的生物学观察结果一致。