Antibiotic resistance has become one of the most challenging problems in health care. Bacteria conjugation is one of the main mechanisms whereby bacteria become resistant to antibiotics. Therefore, the search for specific conjugation inhibitors (COINs) is of interest in the fight against the spread of antibiotic resistances in a variety of laboratory and natural environments. Several compounds, discovered as COINs, are promising candidates in the fight against plasmid dissemination. In this review, we survey the effectiveness and toxicity of the most relevant compounds. Particular emphasis has been placed on unsaturated fatty acid derivatives, as they have been shown to be efficient in preventing plasmid invasiveness in bacterial population...
Bacterial conjugation is a key mechanism by which bacteria acquire antibiotic resistance. Therefore,...
Resumen del póster presentado al 42nd Federation of European Biochemical Societies (FEBS) Congress: ...
Resumen del trabajo presentado a la Conference Type IV Secretion in Gram-Negative and Gram-Positive ...
Antibiotic resistance has become one of the most challenging problems in health care. Bacteria conju...
Antibiotic resistance has become one of the most challenging problems in health care. Bacteria conju...
Bacterial conjugation constitutes a major horizontal gene transfer mechanism for the dissemination o...
ABSTRACT Plasmid conjugation is a major route for the spread of antibiotic resistance genes. Inhibit...
This report describes a high-throughput assay to identify substances that reduce the frequency of co...
Resumen del póster presentado al XXXVII Congreso de la Sociedad Española de Bioquímica y Biología Mo...
Bacterial conjugation is the main mechanism for the dissemination of multiple antibiotic resistance ...
© 2021 Palencia-Gándara et al.Plasmid conjugation is a major route for the spread of antibiotic resi...
PMCID: PMC4908816Bacterial conjugation is the main mechanism responsible for the dissemination of an...
Bacterial conjugation is the main mechanism for the dissemination of multiple antibiotic resistance ...
Bacterial conjugation is the main mechanism for the dissemination of multiple antibiotic resistance ...
Bacterial conjugation is a key mechanism by which bacteria acquire antibiotic resistance. Therefore,...
Bacterial conjugation is a key mechanism by which bacteria acquire antibiotic resistance. Therefore,...
Resumen del póster presentado al 42nd Federation of European Biochemical Societies (FEBS) Congress: ...
Resumen del trabajo presentado a la Conference Type IV Secretion in Gram-Negative and Gram-Positive ...
Antibiotic resistance has become one of the most challenging problems in health care. Bacteria conju...
Antibiotic resistance has become one of the most challenging problems in health care. Bacteria conju...
Bacterial conjugation constitutes a major horizontal gene transfer mechanism for the dissemination o...
ABSTRACT Plasmid conjugation is a major route for the spread of antibiotic resistance genes. Inhibit...
This report describes a high-throughput assay to identify substances that reduce the frequency of co...
Resumen del póster presentado al XXXVII Congreso de la Sociedad Española de Bioquímica y Biología Mo...
Bacterial conjugation is the main mechanism for the dissemination of multiple antibiotic resistance ...
© 2021 Palencia-Gándara et al.Plasmid conjugation is a major route for the spread of antibiotic resi...
PMCID: PMC4908816Bacterial conjugation is the main mechanism responsible for the dissemination of an...
Bacterial conjugation is the main mechanism for the dissemination of multiple antibiotic resistance ...
Bacterial conjugation is the main mechanism for the dissemination of multiple antibiotic resistance ...
Bacterial conjugation is a key mechanism by which bacteria acquire antibiotic resistance. Therefore,...
Bacterial conjugation is a key mechanism by which bacteria acquire antibiotic resistance. Therefore,...
Resumen del póster presentado al 42nd Federation of European Biochemical Societies (FEBS) Congress: ...
Resumen del trabajo presentado a la Conference Type IV Secretion in Gram-Negative and Gram-Positive ...