Department of Comparative Pathobiology, College of Veterinary Medicine, Purdue University, West Lafayette, Indiana, USA.
Department of Pharmaceutical Organic Chemistry, College of Pharmacy, Al-Azhar University, Cairo, Egypt.
Antimicrob Agents Chemother. 2018 Feb 23;62(3). doi: 10.1128/AAC.00701-17. Print 2018 Mar.
Invasive candidiasis presents an emerging global public health challenge due to the emergence of resistance to the frontline treatment options, such as fluconazole. Hence, the identification of other compounds capable of pairing with fluconazole and averting azole resistance would potentially prolong the clinical utility of this important group. In an effort to repurpose drugs in the field of antifungal drug discovery, we explored sulfa antibacterial drugs for the purpose of reversing azole resistance in In this study, we assembled and investigated a library of 21 sulfa antibacterial drugs for their ability to restore fluconazole sensitivity in Surprisingly, the majority of assayed sulfa drugs (15 of 21) were found to exhibit synergistic relationships with fluconazole by checkerboard assay with fractional inhibitory concentration index (ΣFIC) values ranging from <0.0312 to 0.25. Remarkably, five sulfa drugs were able to reverse azole resistance in a clinically achievable range. The structure-activity relationships (SARs) of the amino benzene sulfonamide scaffold as antifungal agents were studied. We also identified the possible mechanism of the synergistic interaction of sulfa antibacterial drugs with azole antifungal drugs. Furthermore, the ability of sulfa antibacterial drugs to inhibit biofilm by 40% was confirmed. In addition, the effects of sulfa-fluconazole combinations on growth kinetics and efflux machinery were explored. Finally, using a infection model, we demonstrated that the sulfa-fluconazole combination does possess potent antifungal activity , reducing in infected worms by ∼50% compared to the control.
侵袭性念珠菌病由于对一线治疗选择(如氟康唑)的耐药性的出现,构成了一个新出现的全球公共卫生挑战。因此,鉴定其他能够与氟康唑结合并避免唑类耐药的化合物将有可能延长这一重要药物的临床应用。为了在抗真菌药物发现领域重新利用药物,我们研究了磺胺类抗菌药物,以期逆转唑类耐药性。在这项研究中,我们组装并研究了 21 种磺胺类抗菌药物库,以研究它们恢复氟康唑敏感性的能力。令人惊讶的是,通过棋盘微量稀释法检测,在检测的磺胺类药物中,大多数(21 种中的 15 种)与氟康唑具有协同关系,其抑菌浓度指数(ΣFIC)值在 0.0312 到 0.25 之间。值得注意的是,有 5 种磺胺类药物能够在临床可达到的范围内逆转唑类耐药性。我们还研究了磺胺类苯磺酰胺类化合物作为抗真菌剂的结构-活性关系。我们还确定了磺胺类抗菌药物与唑类抗真菌药物协同作用的可能机制。此外,还证实了磺胺类抗菌药物抑制生物膜形成的能力达 40%。此外,还研究了磺胺-氟康唑组合对 生长动力学和外排机制的影响。最后,通过 感染模型,我们证明了磺胺-氟康唑组合具有很强的抗真菌活性,与对照组相比,感染蠕虫的数量减少了约 50%。