How combined multicomparative proteomic approaches can improve the understanding of quinolone resistance in Salmonella Typhimurium

Author:

Correia Susana1234,Hébraud Michel56,Poeta Patrícia34,Capelo José L47,Igrejas Gilberto124

Affiliation:

1. Functional Genomics & Proteomics Unit, University of Trás-os-Montes & Alto Douro, Vila Real, Portugal

2. Department of Genetics & Biotechnology, University of Trás-os-Montes & Alto Douro, Vila Real, Portugal

3. Veterinary Science Department, University of Trás-os-Montes & Alto Douro, Vila Real, Portugal

4. LAQV-REQUIMTE, Faculty of Science & Technology, Nova University of Lisbon, Caparica, Portugal

5. UMR454 MEDiS, Institut National de la Recherche Agronomique (INRA), Centre Auvergne-Rhône-Alpes, site de Theix, Saint-Genès Champanelle, France

6. Plate-Forme d’Exploration du Métabolisme composante protéomique, UR370 QuaPA, Institut National de la Recherche Agronomique (INRA), Centre Auvergne-Rhône-Alpes, site de Theix, Saint-Genès Champanelle, France

7. ProteoMass Scientific Society, Faculty of Sciences & Technology, Campus de Caparica, Caparica, Portugal

Publisher

Future Medicine Ltd

Subject

Microbiology (medical),Microbiology

Reference20 articles.

1. Antimicrobial resistance: global report on surveillance. WHO (2014). www.who.int/drugresistance/documents/surveillancereport/en/

2. Prioritization of pathogens to guide discovery, research and development of new antibiotics for drug-resistant bacterial infections, including tuberculosis. WHO (2017). www.who.int/medicines/areas/rational_use/prioritization-of-pathogens/en/

3. InternationalSalmonellaTyphimurium DT104 Infections, 1992–2001

4. Proteome studies of bacterial antibiotic resistance mechanisms

5. Mechanisms of quinolone action and resistance: where do we stand?

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