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首页> 外文期刊>Journal of Medical Microbiology: An Official Journal of the Pathological Society of Great Britain and Ireland >Novel anti-staphylococcal and anti-biofilm properties of two anti-malarial compounds: MMV665953 {1-(3-chloro-4-fluorophenyl)-3-(3,4-dichlorophenyl)urea} and MMV665807 {5-chloro-2-hydroxy-N-[3-(trifluoromethyl)phenyl]benzamide}
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Novel anti-staphylococcal and anti-biofilm properties of two anti-malarial compounds: MMV665953 {1-(3-chloro-4-fluorophenyl)-3-(3,4-dichlorophenyl)urea} and MMV665807 {5-chloro-2-hydroxy-N-[3-(trifluoromethyl)phenyl]benzamide}

机译:两种抗疟疾化合物的新型抗葡萄球菌和抗生物膜特性:MMV665953 {1-(3-chloro-4-fluorophenyl)-3-(3,4-dichlorophenyl)urea}和MMV665807 {5-chloro-2-羟基-N- [3-(三氟甲基)苯基]苯甲酰胺}

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摘要

Purpose. The treatment of device-related infections is challenging and current anti-microbial compounds have poor anti-biofilm activity. We aimed to identify and characterize novel compounds effective in the eradication of Staphylococcus aureus biofilms.Methodology. Two novel compounds, MMV665953 {1-(3-chloro-4-fluorophenyl)-3-(3,4-dichlorophenyl)urea} and MMV665807{5-chloro-2-hydroxy-N-[3-(trifluoromethyl)phenyl]benzamide}, effective in killing S. aureus biofilms, were identified by screening of the open access 'malaria box' chemical library. The minimum bactericidal concentrations, half-maximal inhibition concentration (IC50) values and minimal biofilm killing concentrations effective in the killing of biofilm were determined against meticillin-resistant S. aureus and meticillin-sensitive S. aureus. Fibrin-embedded biofilms were grown under in vivo-relevant conditions, and viability was measured using a resazurin-conversion assay and confocal microscopy. The potential for the development of resistance and cytotoxicity was also assessed.Results. MMV665953 and MMV665807 were bactericidal against S. aureus isolates. The IC50 against S. aureus biofilms was at 0.15–0.58?mg?l?1 after 24?h treatment, whereas the concentration required to eradicate all tested biofilms was 4?mg?l?1, making the compounds more bactericidal than conventional antibiotics. The cytotoxicity against human keratinocytes and primary endothelial cells was determined as IC50 7.47 and 0.18?mg?l?1 for MMV665953, and as 1.895 and 0.076?mg?l?1 for MMV665807. Neither compound was haemolytic nor caused platelet activation. MMV665953 and MMV665807 derivatives with reduced cytotoxicity exhibited a concomitant loss in anti-staphylococcal activity.Conclusion. MMV665953 and MMV665807 are more bactericidal against S. aureus biofilms than currently used anti-staphylococcal antibiotics and represent a valuable structural basis for further investigation in the treatment of staphylococcal biofilm-related infections.
机译:目的。设备相关感染的治疗具有挑战性,并且当前的抗微生物化合物的抗生物膜活性很差。我们旨在鉴定和表征对根除金黄色葡萄球菌生物膜有效的新型化合物。两种新型化合物,MMV665953 {1-(3-氯-4-氟苯基)-3-(3,4-二氯苯基)脲}和MMV665807 {5-氯-2-羟基-N- [3-(三氟甲基)苯基]通过筛选开放获取的“疟疾框”化学文库,鉴定出有效杀死金黄色葡萄球菌生物膜的苯甲酰胺}。测定对耐甲氧西林的金黄色葡萄球菌和对甲氧西林敏感的金黄色葡萄球菌的最小杀菌浓度,半数最大抑制浓度(IC50)值和对生物膜的杀灭有效的最小生物膜杀灭浓度。纤维蛋白包埋的生物膜在体内相关条件下生长,并使用刃天青素转化测定和共聚焦显微镜测量生存力。还评估了产生耐药性和细胞毒性的潜力。 MMV665953和MMV665807对金黄色葡萄球菌分离株具有杀菌作用。处理24?h后,对金黄色葡萄球菌生物膜的IC50为0.15–0.58?mg?l?1,而根除所有测试生物膜所需的浓度为4?mg?l?1,这使得该化合物比常规抗生素更具杀菌力。对人角质形成细胞和原代内皮细胞的细胞毒性对于MMV665953确定为IC50 7.47和0.18?mg?l?1,对于MMV665807确定为1.895和0.076?mg?l?1。化合物既不溶血也不引起血小板活化。具有降低的细胞毒性的MMV665953和MMV665807衍生物同时显示出抗葡萄球菌活性的丧失。与目前使用的抗葡萄球菌抗生素相比,MMV665953和MMV665807对金黄色葡萄球菌生物膜的杀菌能力更高,它们代表了进一步研究葡萄球菌生物膜相关感染的有价值的结构基础。

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