Azmani Asma, Lemriss Sanaa, Barakate Mustapha, Souiri Amal, Dhiba Driss, Hassani Lahcen, Hamdali Hanane
Laboratory of Agro-Industrial and Medical Biotechnologies, Faculty of Sciences and Technology, University of Sultan Moulay Slimane, P.O. Box 523, Beni-Mellal 23000, Morocco.
Department of Biosafety PCL3, Laboratory of Research and Medical Analysis of Gendarmerie Royale, Rabat 10090, Morocco.
BioTech (Basel). 2022 Jun 29;11(3):22. doi: 10.3390/biotech11030022.
Traditional antimicrobial antibiotics are increasingly suffering from the emergence of multidrug resistance among pathogenic microorganisms. The antibiotic era is threatened by the ruthless rise of resistance in bacterial infections. A significant role in these resistance profiles is attributed to multidrug efflux pumps. Hence, much effort is being directed towards developing new compounds to overcome this problem. During our screening program of efflux pumps inhibitors (EPI) produced by bioactive Moroccan Actinobacteria, 210 isolates were screened for their antibacterial activities against strains containing a system of efflux pump AcrAB-TolC, fully functional, and its mutant, inactivated due to the insertion of transposon Tn903 in AcrAB operon, using the method of agar disc diffusion. The results showed that 14 isolates were able to produce EPI as they were active against the wild type strain but not against the mutant in comparison with the synthetic inhibitor L-Phe-L-Arg-β-naphthylamide (PaβN). We focused on the highest EPI activity produced by four strains (Z332, Z35/G, Z385/b and 136). Taxonomic studies and the 16S rDNA sequence indicated that these strains belonged to the species. This work could contribute to the discovery of a new class of antibacterial agents that could expand the therapeutic arsenal.
传统的抗菌抗生素越来越受到致病微生物中多重耐药性出现的困扰。抗生素时代正受到细菌感染中耐药性无情上升的威胁。多重耐药外排泵在这些耐药情况中起着重要作用。因此,人们正投入大量精力开发新化合物以克服这一问题。在我们对摩洛哥生物活性放线菌产生的外排泵抑制剂(EPI)的筛选项目中,使用琼脂平板扩散法,对210株菌株进行了筛选,检测它们对含有完整功能的外排泵AcrAB - TolC系统的菌株及其因转座子Tn903插入AcrAB操纵子而失活的突变体的抗菌活性。结果表明,与合成抑制剂L - Phe - L - Arg - β - 萘酰胺(PaβN)相比,有14株菌株能够产生EPI,因为它们对野生型菌株有活性,但对突变体无活性。我们重点研究了四株菌株(Z332、Z35/G、Z385/b和136)产生的最高EPI活性。分类学研究和16S rDNA序列表明这些菌株属于该物种。这项工作有助于发现一类新的抗菌剂,从而扩大治疗手段。