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首页> 外文期刊>Medicinal Chemistry >Antitumour Antibiotics with Potent Activity Against Multidrug Resistant (MDR) Staphylococcus aureus: A New Approach to Targeting Resistant Bacteria
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Antitumour Antibiotics with Potent Activity Against Multidrug Resistant (MDR) Staphylococcus aureus: A New Approach to Targeting Resistant Bacteria

机译:具有抗多药耐药(MDR)金黄色葡萄球菌活性的抗肿瘤抗生素:靶向耐药细菌的新方法

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摘要

As hospital reports of strains of resistant bacteria are continuing to increase, a new approach is required for the identification of small molecules with antibacterial activity. Natural products that bind covalently to their biological target have been largely unexplored, although in the field of cancer chemotherapy, such molecules have been shown to counter resistance developed through efflux mechanisms. The azinomycins are potent antitumour agents that alkylate DNA and one of the natural products, compound 1, is a mono-alkylator that has been reported to retain potent antitumour activity. All four diastereomers of 1 were synthesized via a route involving late stage introduction of the epoxide stereocentre and separation of the resulting compounds. A non-alkylating analogue and a potential alkylator that cannot intercalate were also made. All four diastereomers are potent antibacterial agents in cell lines containing efflux-based resistance mechanisms. MIC values in the range of 0.25-1.0 μg/ml were observed. Comparison with the antitumour activity of the compounds suggests that the antibacterial activity stems from a similar mechanism of action involving DNA alkylation. As the ultimate molecular target of the azinomycins is unknown, bacterial strains may represent an interesting route for the discovery of the downstream mechanisms affected by DNA alkylation.
机译:随着医院对耐药菌菌株的报道不断增加,需要一种新方法来鉴定具有抗菌活性的小分子。尽管在癌症化学疗法领域中,已经证明了与生物靶标共价结合的天然产物能够抵抗通过外排机制产生的耐药性。阿奇霉素是有效的抗肿瘤剂,可将DNA烷基化,而天然产物之一化合物1是单烷基化剂,据报道可保留有效的抗肿瘤活性。 1的所有四个非对映异构体是通过包括环氧立体中心的后期引入和所得化合物的分离的途径合成的。还制备了不可插入的非烷基化类似物和潜在的烷基化剂。这四种非对映异构体在含有基于外排的耐药机制的细胞系中都是有效的抗菌剂。观察到MIC值在0.25-1.0μg/ ml的范围内。与这些化合物的抗肿瘤活性进行比较表明,抗菌活性源自涉及DNA烷基化的相似作用机理。由于阿奇霉素的最终分子靶标是未知的,细菌菌株可能是发现受DNA烷基化影响的下游机制的有趣途径。

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