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Martinez Gonzalez, G.

Publications and source records attributed to Martinez Gonzalez, G..

3 recordsLinked to original sources

Azelaic Acid Exhibits Dual Antimicrobial and Quorum Sensing Inhibitory Activities Against Pathogens: In Vitro Evaluation and Molecular Docking Insights

Pseudomonas aeruginosa is an opportunistic pathogen whose virulence is largely regulated by quorum sensing (QS), making this system an attractive target for anti-virulence therapies. Azelaic acid (AzA), a naturally occurring dicarboxylic acid widely used in dermatology, has not previously been investigated as a QS inhibitor. This study evaluated the antibacterial and anti-virulence activities of AzA against reference strains and multidrug-resistant clinical isolates of P. aeruginosa, together with its preliminary safety profile and potential molecular interactions with key QS proteins. Minimum inhibitory concentrations (MICs) ranged from 250 to 1000 {micro}g/mL. At sub-inhibitory concentrations, AzA significantly reduced the production of pyocyanin, elastase, protease and alginate in a dose-dependent manner without affecting bacterial viability. Molecular docking predicted favorable interactions of AzA with LasI, LasR, PqsD and PqsR, supporting a potential modulation of QS-associated pathways. Chemoinformatic analyses predicted favorable drug-likeness and safety characteristics, while PBMC viability remained above 90% and hemolysis below 4% within the anti-virulence concentration range. In the Tenebrio molitor infection model, AzA significantly increased larval survival and reduced in vivo pyocyanin production in both the reference strain Pa14 and a multidrug-resistant clinical isolate. Collectively, these findings provide the first evidence that AzA attenuates QS-regulated virulence in P. aeruginosa through complementary in vitro, in silico and in vivo approaches while exhibiting a favorable preliminary safety profile. These results support the repositioning of AzA as a promising anti-virulence candidate for the development of adjunctive therapeutic strategies against multidrug-resistant P. aeruginosa infections.

microbiology↗

Evaluation of the antimicrobial activity of the alcoholic extract of Tagetes erecta against bacteria and fungi of clinical importance.

Antibiotic resistance is a significant global health concern, putting at risk treatment options for infectious diseases. As a result, treatments can be expensive and ineffective, so it is essential to look for new options such as the use of plant extracts with antimicrobial properties to combat these diseases. Tagetes sp is a plant species that is used in folk medicine to cure various diseases and has several properties among which the antimicrobial, for this reason, the aim of this research was to evaluate the antimicrobial activity of the ethanolic extract of Tagetes erecta L against various bacteria and yeasts. The antimicrobial activity of the extract was analyzed by the Kirby-Bauer method at different concentrations. The extract showed antimicrobial activity by presenting inhibition halos mainly against Staphylococcus, obtaining the following results: S. aureus ATCC 43300 (19,400 {+/-} 0.435 mm to 500 mg/mL); S. aureus ATCC 6538 (11,206 {+/-} 0.342 mm to 750 mg/mL); A. baumannii ATCC 19606 (10.570 {+/-} 0.535 mm a 250 mg/mL); P. mirabilis (7.636 {+/-} 0.196 mm a 250 mg/mL) e I. orientalis ATCC 6258 (7.400 {+/-} 0.190 mm a 250 mg/mL). Secondary metabolites such as tannins, quinones, coumarins, phenolic compounds and flavonoids were determined. Tagetes erecta L alcoholic extract has antimicrobial activity against clinically relevant strains and may be considered for further studies against multi-resistant microorganisms in the future.

microbiology↗

Evaluation of antibacterial activity of ethanolic extracts of Ruta chalepensis, Hippocratea excelsa, Litsea glaucescens and Waltheria americana against methicillin-resistant Staphylococcus aureus

Antimicrobial resistance is still a problem today, with increasingly limited therapeutic options. Staphylococcus aureus causes infections of the skin, soft tissues and contains a high degree of pathogenicity. The objective of this work was to determine the antibacterial activity of ethanol extracts from several plants at different concentrations against strains of Staphylococcus aureus resistant and sensitive to methicillin, using the Kirby-Bauer method. The ethanolic extract of Rue (Ruta chalepensis) shows a significantly higher antibacterial activity than the extracts of Cancerina (Hippocratea excelsa), Laurel (Litsea glaucescens) and Tapacola (Waltheria americana) alone and in combination. Phenolic compounds, anthocyanins and flavonoids were determined. Rue may contribute to the potential identification of a natural alternative therapy against methicillin resistant Staphylococcus aureus.

microbiology↗