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首页> 外文期刊>Antimicrobial agents and chemotherapy. >Antimicrobial Activity of Euplotin C, the Sesquiterpene Taxonomic Marker from the Marine Ciliate Euplotes crassus.
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Antimicrobial Activity of Euplotin C, the Sesquiterpene Taxonomic Marker from the Marine Ciliate Euplotes crassus.

机译:Euplotin C(一种来自海洋纤毛Euplotes crassus的倍半萜烯生物分类标记)的抗菌活性。

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Strains of the marine ciliate protist Euplotes crassus produce exclusive terpenoids called euplotins that play an ecological role. Among these derivatives, euplotin C is the main of four secondary metabolites isolated from cultures of this protozoon and represents the sesquiterpene taxonomic marker from E. crassus. Because different terpenoid metabolites of plant origin showed a certain antimicrobial activity, we assessed the compound euplotin C, purified by high-pressure liquid chromatography and solubilized in two solubility enhancers, against the protozoa Leishmania major and Leishmani infantum, the fungus Candida albicans, and nine strains of gram-positive and gram-negative microorganisms. An activity of euplotin C against Leishmania promastigotes was demonstrated (50% lethal doses were 4.6 or 8.1 microg/ml depending on the agent used to solubilize the compound), while the effect was less evident on Candida and nearly absent on bacteria. A nonsignificant cytotoxicity (50% lethal dose, >200 microg/ml) against the J774 cell line was observed. A leishmanicidal activity was also shown by the living, euplotin-producing cells of E. crassus cultured together with promastigotes; this activity increased with time from 10 min to 6 h of incubation. This study provides an initial rationale for the evaluation of euplotin C and other similar natural products as alternative or possibly synergistic compounds for current antiprotozoon chemotherapeutics.
机译:海洋纤毛虫的原生生物Euplotes crassus产生的唯一萜类化合物称为euplotins,具有生态作用。在这些衍生物中,依泊洛汀C是从该原生动物的培养物中分离出的四个次生代谢产物的主要成分,并代表了真核大肠杆菌的倍半萜烯生物分类标记。由于植物来源的不同萜类代谢产物显示出一定的抗菌活性,因此我们对化合物依泊洛汀C进行了评估,该化合物经高压液相色谱纯化,并溶于两种溶解度增强剂中,以对抗原生动物大利什曼原虫和婴儿利什曼原虫,白色念珠菌和9种真菌。革兰氏阳性和革兰氏阴性微生物菌株。证明了依泊洛汀C对抗利什曼原虫前鞭毛体的活性(50%的致死剂量为4.6或8.1微克/毫升,这取决于用于溶解化合物的药剂),而对念珠菌的作用较弱,而对细菌的作用几乎不存在。观察到对J774细胞系无明显的细胞毒性(50%致死剂量,> 200 microg / ml)。通过与前鞭毛体一起培养的活的E. crassus产生紫杉醇的活细胞也显示出了杀菌作用。从孵化10分钟到6小时,这种活性会增加。这项研究为评价依泊洛汀C和其他类似天然产物作为当前抗原生动物化学疗法的替代或可能具有协同作用的化合物提供了初步依据。

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