Olea-Azar C, Rigol C, Mendizábal F, Briones R
Departamento de Química Inorgánica y Analítica, Facultad de Ciencias Químicas y Farmacéuticas, Universidad de Chile.
Mini Rev Med Chem. 2006 Feb;6(2):211-20. doi: 10.2174/138955706775475966.
Free radicals may be reaction intermediates in biological systems in more situations than are presently recognized. However, progress in detecting such species by Electron Spin Resonance (ESR) has been relatively slow. ESR is a very sensitive technique for free radical detection and characterization. It can be used to investigate very low concentrations of radicals provided that they are stable enough for their presence to be detected. For unstable radicals special techniques have to be employed. One of these methods is called Spin Trapping. Parasitic diseases in tropical and subtropical areas constitute a major health and economic problem. The range of antiparasitic drugs varies widely in structural complexity and action at the subcellular and molecular levels. However, a number of these drugs are thought to exert their action by generating free radicals. Most of the free radical producing drugs used against parasites are: quinones, naphtoquinones, quinone-imines, aminoquinolines, N-oxides and nitroheterocyclic compounds. This review summarizes some of the more relevant achievements of ESR and Spin Trapping applications in parasitic diseases studies. The use of ESR spectroscopy to obtain relevant information about free radical characterization and the analysis of the mechanisms of action of drugs involved in several parasitic diseases is also presented.
在比目前所认识到的更多情况下,自由基可能是生物系统中的反应中间体。然而,通过电子自旋共振(ESR)检测此类物质的进展相对缓慢。ESR是一种用于自由基检测和表征的非常灵敏的技术。只要自由基足够稳定以便能够检测到它们的存在,就可以用它来研究极低浓度的自由基。对于不稳定的自由基,则必须采用特殊技术。其中一种方法称为自旋捕集。热带和亚热带地区的寄生虫病构成了一个重大的健康和经济问题。抗寄生虫药物的范围在结构复杂性以及在亚细胞和分子水平上的作用方面差异很大。然而,人们认为其中一些药物是通过产生自由基来发挥作用的。大多数用于对抗寄生虫的产自由基药物有:醌类、萘醌类、醌亚胺类、氨基喹啉类、N-氧化物和硝基杂环化合物。本综述总结了ESR和自旋捕集应用在寄生虫病研究中的一些更相关的成果。还介绍了利用ESR光谱获取有关自由基表征的相关信息以及分析几种寄生虫病中所涉及药物的作用机制。