Yarlett N, Rowlands C C, Yarlett N C, Evans J C, Lloyd D
Parasitology. 1987 Feb;94 ( Pt 1):93-9. doi: 10.1017/s0031182000053488.
The inhibitory effect of niridazole on hydrogen production by metronidazole-resistant (CDC-85) and susceptible (C1-NIH) Trichomonas vaginalis strains was investigated. The results show that niridazole is more effective than metronidazole in inhibiting hydrogen production by the resistant isolate. In CDC-85 aerobic inhibition requires a 4-fold increase in metronidazole concentration compared with that required anaerobically, but the corresponding factor for niridazole is only 1.5-fold. Reduction of the drug by a hydrogenosome-enriched preparation gave rise to a multiline electron spin resonance detectable signal, which is due to a nitrogen-centred radical.
研究了硝唑咪对甲硝唑耐药(CDC - 85)和敏感(C1 - NIH)阴道毛滴虫菌株产氢的抑制作用。结果表明,在抑制耐药菌株产氢方面,硝唑咪比甲硝唑更有效。在CDC - 85菌株中,需氧条件下抑制产氢所需的甲硝唑浓度比厌氧条件下高4倍,但硝唑咪的相应倍数仅为1.5倍。用富含氢化酶体的制剂对药物进行还原产生了一个多线电子自旋共振可检测信号,该信号归因于以氮为中心的自由基。