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Cyclic voltammetric determination of free radical species from nitroimidazopyran: a new antituberculosis agent

机译:循环伏安法测定硝基咪唑并吡喃中的自由基种类:一种新型抗结核药

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PA-824 (2-nitro-6-(4-trifluoromethoxy-benzyloxy)-6,7-dihydro-5H-imidazo[2,1-b][1,3]oxazine) is being tested as antituberculosis drug. Little is known on the action mechanism of PA-824; however the reduction of the nitro group seems to be a key step in the metabolic activation, as is observed for the well-known bactericidal metronidazole. Consequently, this paper is focuwed on the cyclic voltammetric behavior of PA-824 with the aim of revealing the formation and stability of the corresponding nitro radical anion and its comparison with the metronidazole behavior. Both compounds PA-824 and metronidazole reveal, in aprotic medium (DMSO + 0.1 tetrabutylammonium hexafluorophosophate), a similar reduction pattern showing a well-resolved couple due to nitro reduction to form the corresponding nitro radical anion. The electrode reaction obeys an EC_2 mechanism with a dimerization reaction as the chemical step in aprotic medium. Using cyclic voltammetry theory for a dimerization reaction we have calculated the second-order decay constants, k_(2,dim), and the half-life time, t_(1/2), for the nitro radical anions formed from PA-824 and metronidazole. We have obtained k_(2,dim) values of 2.22 * 10~2 and 2.58 * 10~4 M~(-1) s~(-1) for metronidazole and PA-824, respectively. Our voltammetric results show that the PA-824 nitro radical anion requires more energy for formation (about 200 mV) and it is approximately 100 times less stable than the metronidazole radical anion.
机译:PA-824(2-硝基-6-(4-三氟甲氧基-苄氧基)-6,7-二氢-5H-咪唑并[2,1-b] [1,3]恶嗪)正在作为抗结核药物进行测试。关于PA-824的作用机理知之甚少。然而,如众所周知的杀菌甲硝唑所观察到的,硝基的还原似乎是代谢活化中的关键步骤。因此,本文着眼于PA-824的循环伏安行为,旨在揭示相应硝基自由基阴离子的形成和稳定性,并与甲硝唑行为进行比较。化合物PA-824和甲硝唑在非质子介质(DMSO + 0.1六氟磷酸四丁铵)中均显示出相似的还原模式,由于硝基还原形成相应的硝基自由基阴离子,因此显示了良好的拆分对。电极反应遵循带有二聚反应的EC_2机理,作为非质子介质中的化学步骤。使用循环伏安理论进行二聚化反应,我们已经计算出PA-824和PA-824形成的硝基自由基的二阶衰减常数k_(2,dim)和半衰期t_(1/2)。甲硝唑。甲硝唑和PA-824的k_(2,dim)值分别为2.22 * 10〜2和2.58 * 10〜4 M〜(-1)s〜(-1)。我们的伏安结果表明,PA-824硝基自由基阴离子需要更多的能量来形成(约200 mV),并且稳定性比甲硝唑自由基阴离子低100倍。

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