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Isolation and characterization of antiprotozoal compound-producing Streptomyces species from Mongolian soils

机译:蒙古土壤中抗丙二醇化合物的分离与表征蒙古族土壤

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Natural resources are recognized as important sources of potential drugs for treating various infections, and microorganisms are a rich natural source of diverse compounds. Among the world's microorganisms, actinomycetes, which are abundant in soil and marine, are the well-known producers of a wide range of bioactive secondary metabolites and antibiotics. In the present study, four actinomycetes (samples N25, N6, N18, and N12) were isolated from soil samples in Mongolia. Phylogenetic analysis of these isolates revealed that they share the highest similarity with Streptomyces canus (N25), S. cirratus (N6), S. bacillaris (N18) and S. peucetius (N12), based on 16S rRNA gene sequencing. Crude extracts were obtained from them using ethyl acetate, and the crude fractions were separated by thin layer chromatography. The fractions were then evaluated for their cytotoxicities and their anti-Toxoplasma and antimalarial activities in vitro. The S. canus (N25) crude extract was selected for further chemical characterization based on its antiprotozoal activities. Using liquid chromatographyhigh resolution mass spectrometry, phenazine-1-carboxylic acid (PCA) was detected and identified in the active fractions of the metabolites from strain N25. We next confirmed that commercially available PCA possesses antiprotozoal activity against T. gondii (IC50: 55.5 mu g/mL) and Plasmodium falciparum (IC50: 6.4 mu g/ml) in vitro. The results of this study reveal that soil actinomycetes are potential sources of antiprotozoal compounds, and that PCA merits further investigation as an anti-protozoal agent.
机译:自然资源被认为是治疗各种感染的潜在药物的重要来源,微生物是一种丰富的不同化合物的自然来源。在世界上的微生物中,土壤和海洋丰富的放线菌是广泛的生物活性次生代谢物和抗生素的着名生产商。在本研究中,从蒙古的土壤样品中分离出四种放线菌(样品N25,N6,N18和N12)。这些分离物的系统发育分析显示,基于16S rRNA基因测序,它们与链霉菌甘油(N25),S.Cirratus(N6),S.Bacillaris(N18)和S.Bacillaris(N18)和S.Bacilaris(N12)共享最高相似性。使用乙酸乙酯从它们中获得粗提取物,通过薄层色谱法分离粗级分。然后在体外评估级分,对其细胞毒性及其抗致毒素和抗疟疾活性进行评价。选择S.甘蔗(N25)粗提取物,基于其抗丙二醛活性进行进一步的化学表征。使用液相色谱分辨率质谱法,检测吩嗪-1-羧酸(PCA),并在来自菌株N25的代谢物的活性分数中鉴定。接下来,我们确认市售的PCA具有对T.Gondii(IC50:55.5μg/ ml)和体外疟原虫(IC50:6.4μg/ ml)的反共过生活性。该研究的结果表明,土壤放线菌是潜在的抗双子化合物的潜在来源,并且PCA的优选进一步调查作为抗原生动物。

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