首页> 外文期刊>Molecular pharmacology. >Potent antimycobacterial activity of the pyridoxal isonicotinoyl hydrazone analog 2-pyridylcarboxaldehyde isonicotinoyl hydrazone: A lipophilic transport vehicle for isonicotinic acid hydrazide
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Potent antimycobacterial activity of the pyridoxal isonicotinoyl hydrazone analog 2-pyridylcarboxaldehyde isonicotinoyl hydrazone: A lipophilic transport vehicle for isonicotinic acid hydrazide

机译:吡ido醛异烟酰yl类似物2-吡啶甲醛甲醛异烟酰的强抗分枝杆菌活性:异烟酸酰肼的亲脂性运载体

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ABSTRACT The rise in drug-resistant strains of Mycobacterium tuberculosis is a major threat to human health and highlights the need for new therapeutic strategies. In this study, we have assessed whether high-affinity iron chelators of the pyridoxal isonicotinoyl hydrazone (PIH) class can restrict the growth of clinically significant mycobacteria. Screening a library of PIH derivatives revealed that one compound, namely, 2-pyridylcarboxaldehyde isonicotinoyl hydrazone (PCIH), exhibited nanomolar in vitro activity against Mycobacterium bovis bacille Calmette-Guérin and virulent M. tuberculosis. Interestingly, PCIH is derived from the condensation of 2- pyridylcarboxaldehyde with the first-line antituberculosis drug isoniazid [i.e., isonicotinic acid hydrazide (INH)]. PCIH displayed minimal host cell toxicity and was effective at inhibiting growth of M. tuberculosis within cultured macrophages and also in vivo in mice. Further, PCIH restricted mycobacterial growth at high bacterial loads in culture, a property not observed with INH, which shares the isonicotinoyl hydrazide moiety with PCIH. When tested against Mycobacterium avium, PCIH was more effective than INH at inhibiting bacterial growth in broth culture and in macrophages, and also reduced bacterial loads in vivo. Complexation of PCIH with iron decreased its effectiveness, suggesting that iron chelation may play some role in its antimycobacterial efficacy. However, this could not totally account for its potent efficacy, and structureactivity relationship studies suggest that PCIH acts as a lipophilic vehicle for the transport of its intact INH moiety into themammalian cell and the mycobacterium. These results demonstrate that ironchelating agents such as PCIH may be of benefit in the treatment and control of mycobacterial infection.
机译:摘要结核分枝杆菌耐药株的增加是对人类健康的主要威胁,并突出了对新治疗策略的需求。在这项研究中,我们评估了吡ido醛异烟酰yl(PIH)类的高亲和力铁螯合剂是否可以限制临床上重要的分枝杆菌的生长。筛选PIH衍生物的文库发现,一种化合物2-吡啶基羧甲醛异烟酰yl(PCIH)对牛分枝杆菌杆菌Calmette-Guérin和强力结核分枝杆菌表现出纳摩尔的体外活性。有趣的是,PCIH衍生自2-吡啶基甲醛与一线抗结核药异烟肼[即异烟酸酰肼(INH)]的缩合反应。 PCIH显示出最小的宿主细胞毒性,并且在抑制培养的巨噬细胞内以及小鼠体内的结核分枝杆菌生长方面均有效。此外,PCIH限制了培养物中细菌含量高时分枝杆菌的生长,这是INH所没有观察到的特性,INH与PCIH共有异烟酰酰肼部分。当针对鸟分枝杆菌进行测试时,PCIH在抑制肉汤培养物中和巨噬细胞中的细菌生长方面比INH更有效,并且还减少了体内细菌载量。 PCIH与铁的络合作用降低了其有效性,表明铁螯合可能在其抗分枝杆菌功效中发挥了一定作用。但是,这不能完全解释其有效功效,结构活性关系研究表明,PCIH充当亲脂性媒介物,用于将其完整的INH部分转运到哺乳动物细胞和分枝杆菌中。这些结果表明,铁螯合剂如PCIH可能对分枝杆菌感染的治疗和控制有益。

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