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Antimycobacterial activity of rhodamine 3,4-HPO iron chelators against Mycobacterium avium: analysis of the contribution of functional groups and of chelator's combination with ethambutol

机译:罗丹明3,4-HPO铁螯合剂对鸟分枝杆菌的抗分枝杆菌活性:分析功能基团的作用以及螯合剂与乙胺丁醇的结合

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Rhodamine-labelled 3-hydroxy-4-pyridinone (3,4-HPO) chelators exhibit antimycobacterial activity, related but not limited to their iron binding capacity. We previously found that bacterial growth inhibition observed for chelators with ethyl substituents on the amino groups of the xanthene ring of rhodamine and a thiourea linkage between rhodamine and the chelating unit (MRH7 and MRB7) was different from that of compounds with methyl substituents and an amide linkage (MRH8 and MRB8). In this work we evaluated the antimycobacterial activity of two new chelators (MRH10 and MRB9) expressly designed to allow: (a) the direct comparison of the influence of the functional groups per se and (b) identification of the finest combination to achieve a higher biological activity. The activity of the chelators was assessed, as previously, by measuring their effect against M. avium. In this study we also report the antimycobacterial effect of MRH7, which proved to be the best performer of all four chelators, in combination with ethambutol, which is one of the antibiotics currently in use to treat mycobacterial infections. The results are indicative that a combination of 3,4-HPO iron chelators with an antibiotic is a promising strategy to fight M. avium infections. The current results are relevant for the choice of the best chelator in our set of compounds and also for the design of novel molecular architectures to target cellular membranes.
机译:罗丹明标记的3-羟基-4-吡啶酮(3,4-HPO)螯合剂具有抗分枝杆菌活性,与但不限于其铁结合能力有关。我们先前发现,在罗丹明x吨环的氨基上具有乙基取代基的螯合剂以及若丹明与螯合单元(MRH7和MRB7)之间的硫脲键合所观察到的螯合剂与具有甲基取代基和酰胺基的化合物的抑制作用不同。链接(MRH8和MRB8)。在这项工作中,我们评估了两种新设计的螯合剂(MRH10和MRB9)的抗分枝杆菌活性,这些螯合剂明确设计用于:(a)直接比较官能团本身的影响,以及(b)鉴定最佳组合以获得更高的生物活性。如前所述,通过测量螯合剂对鸟分枝杆菌的作用来评估螯合剂的活性。在这项研究中,我们还报告了MRH7的抗分枝杆菌作用,事实证明它是所有四种螯合剂中表现最好的,与乙胺丁醇联合使用,乙胺丁醇是目前用于治疗分枝杆菌感染的抗生素之一。结果表明3,4-HPO铁螯合剂与抗生素的结合是对抗鸟分枝杆菌感染的有前途的策略。目前的结果与选择我们的化合物中最好的螯合剂有关,也与针对细胞膜的新型分子结构设计有关。

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