Moussa Jennifer, Gargallo-Viola Domingo, Thomsen Line Elnif
Department of Veterinary and Animal Sciences, Faculty of Health and Medical Sciences, University of Copenhagen, 1870 Frederiksberg, Denmark.
ABAC Therapeutics, 08950 Barcelona, Spain.
MethodsX. 2024 May 3;12:102740. doi: 10.1016/j.mex.2024.102740. eCollection 2024 Jun.
Plasmid conjugation is an important contributing factor to the spread of antibiotic resistance among bacteria, posing a significant global health threat. Our method introduces an innovative high-throughput screening approach to identify compounds that inhibit or reduce conjugation, addressing the need for new strategies against the spread of antimicrobial resistance. Using strains as donor and recipient, we screened 3500 compounds from a library provided by ABAC Therapeutics. Each 96 -well plate was loaded with 88 different compounds and bacterial cultures. Every plate also included negative and positive controls of conjugation. After an hour, cultures from wells were spotted on agar plates and assessed visually. Compounds that showed a visible effect on conjugation were retested. Six compounds targeting conjugation were found, showing promise for further analysis.
质粒接合是细菌间抗生素耐药性传播的一个重要促成因素,对全球健康构成重大威胁。我们的方法引入了一种创新的高通量筛选方法,以识别抑制或减少接合的化合物,满足对抗微生物耐药性传播的新策略的需求。使用菌株作为供体和受体,我们从ABAC Therapeutics提供的文库中筛选了3500种化合物。每个96孔板装载88种不同的化合物和细菌培养物。每个板还包括接合的阴性和阳性对照。一小时后,将孔中的培养物点样在琼脂平板上并进行目视评估。对显示出对接合有明显影响的化合物进行重新测试。发现了六种靶向接合的化合物,有望进行进一步分析。