Departamento de Oceanografía Biológica, Centro de Investigación Científica y de Educación Superior de Ensenada (CICESE), Ensenada, Baja California, 22860, México.
Proteomics Program, Faculty of Health and Medical Sciences, NovoNordisk Foundation Center for Protein Research (NNF-CPR), University of Copenhagen, Blegdamsvej 3B, 2200, Copenhagen, Denmark.
Curr Med Chem. 2022;30(1):30-58. doi: 10.2174/0929867329666220329090822.
The abuse and incorrect administration of antibiotics has resulted in an increased proliferation of bacteria that exhibit drug resistance. The emergence of resistant bacteria has become one of the biggest health concerns globally, and an enormous effort has been made to combat them. However, despite the efforts, the emergence of resistant strains is rapidly increasing, while the discovery of new classes of antibiotics has lagged. For this reason, it is pivotal to acquire a more detailed knowledge of bacterial resistance mechanisms and the mechanism of action of substances with antibacterial effects to identify biomarkers, therapeutic targets, and the development of new antibiotics. Metabolomics and proteomics, combined with mass spectrometry for data acquisition, are suitable techniques and have already been applied successfully. This review presents basic aspects of the metabolomic and proteomic approaches and their application for the elucidation of bacterial resistance mechanisms.
抗生素的滥用和不当使用导致了具有耐药性的细菌大量繁殖。耐药菌的出现已成为全球最大的健康问题之一,人们为此付出了巨大的努力来与之抗争。然而,尽管付出了这些努力,耐药菌株的出现仍在迅速增加,而新抗生素类别的发现却滞后了。因此,更详细地了解细菌耐药机制以及具有抗菌作用的物质的作用机制,以识别生物标志物、治疗靶点和开发新的抗生素,是至关重要的。代谢组学和蛋白质组学与质谱法相结合用于数据采集,是合适的技术,并且已经成功应用。本文综述了代谢组学和蛋白质组学方法的基本方面及其在阐明细菌耐药机制方面的应用。