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Novel long-chain compounds with both immunomodulatory and MenA inhibitory activities against Staphylococcus aureus and its biofilm

机译:具有针对金黄色葡萄球菌及其生物膜的免疫调节和MenA抑制活性的新型长链化合物

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摘要

Menaquinone (MK) biosynthesis pathway is a potential target for evaluating antimicrobials in gram-positive bacteria. Here, 1,4-dihydroxy-2-naphthoate prenyltransferase (MenA) was targeted to reduce methicillin-resistant Staphylococcus aureus (MRSA) growth. MenA inhibiting, long chain-based compounds were designed, synthesized and evaluated against MRSA and menaquinone utilizing bacteria in aerobic conditions. The results showed that these bacteria were susceptible to most of the compounds. Menaquinone (MK-4) supplementation rescued MRSA growth, suggesting these compounds inhibit MK biosynthesis. >3a and >7c exhibited promising inhibitory activities with MICs ranging 1–8 μg/mL against MRSA strains. The compounds did not facilitate small colony variant formation. These compounds also inhibited the biofilm growth by MRSA at high concentration. Compounds >3a, >6b and >7c displayed a promising extracellular bactericidal activity against MRSA at concentrations equal to and four-fold less than their respective MICs. We also observed cytokines released from THP-1 macrophages treated with compounds >3a, >6b and >7c and found decreases in TNF-α and IL-6 release and increase in IL-1β. These data provide evidence that MenA inhibitors act as TNF-α and IL-6 inhibitors, raising the potential for development and application of these compounds as potential immunomodulatory agents.
机译:甲萘醌(MK)生物合成途径是评估革兰氏阳性细菌中抗菌药物的潜在目标。在这里,1,4-二羟基-2-萘甲酸异戊二烯基转移酶(MenA)的目标是减少耐甲氧西林的金黄色葡萄球菌(MRSA)的生长。利用有氧条件下的细菌设计,合成MenA抑制性长链基化合物,并针对MRSA和甲萘醌进行评估。结果表明,这些细菌对大多数化合物敏感。甲萘醌(MK-4)补充物挽救了MRSA的生长,表明这些化合物抑制了MK的生物合成。 > 3a 和> 7c 对MIC的MRSA菌株具有抑制作用,其MIC范围为1–8μg / mL。该化合物不促进小菌落变体的形成。这些化合物还通过高浓度的MRSA抑制生物膜的生长。化合物> 3a ,> 6b 和> 7c 显示出有希望的针对MRSA的细胞外杀菌活性,其浓度分别等于其各自MIC的四分之一。我们还观察了用化合物> 3a ,> 6b 和> 7c 处理的THP-1巨噬细胞释放的细胞因子,发现TNF-α和IL-6降低释放并增加IL-1β。这些数据提供了MenA抑制剂充当TNF-α和IL-6抑制剂的证据,从而提高了开发和应用这些化合物作为潜在免疫调节剂的潜力。

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