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Bactericidal activity of organic extracts from Flourensia cernua DC against strains of Mycobacterium tuberculosis.

机译:蕨类植物DC的有机提取物对结核分枝杆菌菌株的杀菌活性。

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BACKGROUND: Tuberculosis is a chronic disease caused mainly by Mycobacterium tuberculosis. The emergence of antibiotic-resistant strains of this species underscores the need for novel effective drugs against resistant mycobacteria as first-line antituberculosis medications. METHODS: Crude aqueous (obtained by decoction, in accordance with the traditional mode of preparation), methanol, acetone, and hexane extracts from aerial parts of Artemisia ludoviciana Nutt., Chenopodium ambrosioides L., Marrubium vulgare L., Mentha spicata L., and Flourensia cernua DC were assessed for their ability to either inhibit the growth of or kill M. tuberculosis strains H37Rv and CIBIN:UMF:15:99, the former being sensitive to, and the latter resistant to, streptomycin, isoniazide, rifampin, ethambutol, and pyrazinamide. These five plant species are used in Mexico to treat respiratory disorders. RESULTS: Flourensia cernua was the uniquely active plant among those evaluated. Its hexane and acetone extracts not only inhibited the growth of but killed M. tuberculosis. The hexane extract showed a minimal inhibitory concentration (MIC) of 50 and 25 microg/mL against sensitive and resistant strains, respectively; the acetone extract was active against only CIBIN:UMF:15:99 (MIC = 100 microg/mL). CONCLUSIONS: The hexane extract from F. cernua leaves could be an important source of bactericidal compounds against multidrug-resistant M. tuberculosis.
机译:背景:结核病是一种主要由结核分枝杆菌引起的慢性疾病。该种类的抗生素抗性菌株的出现突显了对作为抗线分枝杆菌药物的新型有效药物的需求,该药物可抵抗耐药性分枝杆菌。方法:从蒿蒿,aerial藜藜,aerial叶大头菜,薄荷叶,大叶蒿的地上部分的粗制水溶液(通过水煎制,按照传统的制备方式获得),甲醇,丙酮和己烷提取物。评估了Flourensia cernua DC和Flourensia cernua DC抑制结核分枝杆菌菌株H37Rv和CIBIN:UMF:15:99的生长或杀死其能力,前者对链霉素,异烟肼,利福平,乙胺丁醇敏感,而后者对链霉素敏感和吡嗪酰胺。这五种植物在墨西哥用于治疗呼吸系统疾病。结果:芦荟是唯一被评估的活性植物。其己烷和丙酮提取物不仅抑制结核分枝杆菌的生长,而且杀死了结核分枝杆菌。己烷提取物对敏感菌株和耐药菌株的最小抑菌浓度(MIC)分别为50和25 microg / mL。丙酮提取物仅对CIBIN:UMF:15:99有活性(MIC = 100微克/毫升)。结论:蜡状蕨叶中的己烷提取物可能是抵抗多重耐药结核分枝杆菌的重要杀菌源。

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