Department of Microbiology, and Department of Dermatology of Sir Run Run Shaw Hospital, School of Medicine, Zhejiang Universitygrid.13402.34, Hangzhou, People's Republic of China.
State Key Laboratory for Diagnosis and Treatment of Infectious Diseases, Collaborative Innovation Center for Diagnosis and Treatment of Infectious Diseases, The First Affiliated Hospital, School of Medicine, Zhejiang Universitygrid.13402.34, Hangzhou, People's Republic of China.
Microbiol Spectr. 2022 Dec 21;10(6):e0395222. doi: 10.1128/spectrum.03952-22. Epub 2022 Nov 9.
Alternative antimicrobial therapies are urgently required for the multidrug-resistant bacterial pathogen Neisseria gonorrhoeae, for which currently ceftriaxone is the only remaining recommended first-line therapy. Repurposing of drugs that are approved for other clinical applications offers an efficient approach for development of alternative antimicrobial therapies. Auranofin, cannabidivarin, and tolfenamic acid were recently identified to display antimicrobial activity against N. gonorrhoeae. Here, we investigated their activity against a collection of 575 multidrug-resistant clinical isolates. All three compounds displayed consistent antimicrobial activity against all isolates, including against strains associated with the high-level ceftriaxone-resistant FC428 clone, with both the mode and MIC for auranofin of 0.5 mg/L, while both the mode and MIC for cannabidivarin and tolfenamic acid were 8 mg/L. Correlations between MICs of ceftriaxone and auranofin, cannabidivarin or tolfenamic acid were low, indicating that development of cross-resistance is unlikely. Furthermore, antimicrobial synergy analysis between ceftriaxone and auranofin, cannabidivarin, or tolfenamic acid by determination of the fractional inhibitory concentration index (FICI) resulted in an interpretation of indifference. Finally, time-kill analyses showed that all three compounds are bactericidal against both the N. gonorrhoeae ATCC 49226 reference strain and an FC428-associated clinical isolate, with particularly cannabidivarin displaying rapid bactericidal activity. Overall, auranofin, cannabidivarin, and tolfenamic acid displayed consistent antimicrobial activity against multidrug-resistant N. gonorrhoeae, warranting further exploration of their suitability as alternative antimicrobials for treatment of gonococcal infections. Neisseria gonorrhoeae is a major public health concern because of the high incidence of gonorrhea and the increasingly limited options for antimicrobial therapy. Strains associated with the FC428 clone are a particular concern because they have shown global dissemination and they display high-level resistance against the currently recommended ceftriaxone therapy. Therefore, development of alternative antimicrobial therapies is urgently required to ensure treatment of gonorrhea remains available in the future. Repurposing of clinically approved drugs could be a rapid approach for the development of such alternative antimicrobials. In this study, we showed that repurposing of auranofin, cannabidivarin, and tolfenamic acid for antimicrobial therapy of gonorrhea deserves further clinical explorations because these compounds displayed consistent antimicrobial activity against a large collection of contemporary multidrug-resistant gonococcal isolates that included strains associated with the FC428 clone.
耐多药淋病奈瑟菌急需替代抗菌疗法,目前头孢曲松是唯一推荐的一线治疗药物。重新利用已批准用于其他临床应用的药物为开发替代抗菌疗法提供了一种有效的方法。金诺芬、大麻二酚和托芬那酸最近被发现对淋病奈瑟菌具有抗菌活性。在这里,我们研究了它们对 575 株多药耐药临床分离株的活性。三种化合物对所有分离株均表现出一致的抗菌活性,包括对高水平头孢曲松耐药的 FC428 克隆相关菌株,金诺芬的模式和 MIC 均为 0.5mg/L,而大麻二酚和托芬那酸的模式和 MIC 均为 8mg/L。头孢曲松和金诺芬、大麻二酚或托芬那酸的 MIC 之间相关性较低,表明不太可能产生交叉耐药性。此外,通过测定部分抑菌浓度指数(FICI)对头孢曲松和金诺芬、大麻二酚或托芬那酸进行抗菌协同分析,结果表明无协同作用。最后,时间杀伤分析表明,三种化合物对淋病奈瑟菌 ATCC 49226 参考株和 FC428 相关临床分离株均具有杀菌作用,特别是大麻二酚显示出快速杀菌活性。总的来说,金诺芬、大麻二酚和托芬那酸对多药耐药淋病奈瑟菌表现出一致的抗菌活性,值得进一步探索它们作为治疗淋病感染的替代抗菌药物的适用性。淋病奈瑟菌是一个主要的公共卫生问题,因为淋病的发病率很高,而且抗菌治疗的选择越来越有限。与 FC428 克隆相关的菌株尤其令人担忧,因为它们已经在全球传播,并且对目前推荐的头孢曲松治疗显示出高水平的耐药性。因此,迫切需要开发替代抗菌疗法,以确保未来仍可治疗淋病。重新利用已批准的临床药物可能是开发此类替代抗菌药物的快速方法。在这项研究中,我们表明,金诺芬、大麻二酚和托芬那酸重新用于淋病的抗菌治疗值得进一步的临床探索,因为这些化合物对包括与 FC428 克隆相关的菌株在内的大量当代多药耐药淋病奈瑟菌分离株表现出一致的抗菌活性。