The increasing demand for new and effective antibiotics requires intelligent strategies to obtain a wide range of potential candidates. Laccase-catalyzed reactions have been successfully applied to synthesize new β-lactam antibiotics and other antibiotics. In this work, laccases from three different origins were used to produce new aminoglycoside antibiotics. Kanamycin, tobramycin and gentamicin were coupled with the laccase substrate 2,5-dihydroxy--(2-hydroxyethyl)-benzamide. The products were isolated, structurally characterized and tested in vitro for antibacterial activity against various strains of Staphylococci, including multidrug-resistant strains. The cytotoxicity of these products was tested using FL cells. The coupling products showed comparable and, in some cases, better antibacterial activity than the parent antibiotics in the agar diffusion assay, and they were not cytotoxic. The products protected mice against infection with , which was lethal to the control animals. The results underline the great potential of laccases in obtaining new biologically active compounds, in this case new antibiotic candidates from the class of aminoglycosides.
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http://dx.doi.org/10.3390/microorganisms10030626 | DOI Listing |
J Wound Care
January 2025
Jobst Vascular Institute, ProMedica Health Network, Wound Care Program, Toledo, Ohio, US.
Objective: The presence of microorganisms in a wound may lead to the development of pathologically extensive inflammation, and either delay or prevent the healing of hard-to-heal (chronic) wounds. The aim of this case series is to explore the use of topical gentamicin ointment, an aminoglycoside with activity against aerobic Gram-negative bacteria, as an option to address hard-to-heal wounds.
Method: We present a retrospective case series of patients with hard-to-heal wounds of varying pathophysiologies treated with topical gentamicin.
Molecules
December 2024
Departamento de Nefrología, Hospital Centenario Miguel Hidalgo, Aguascalientes 20240, Mexico.
Currently, a global health crisis is being caused by microbial resistance, in which plays a crucial role, being considered the highest-priority microorganism by the World Health Organization (WHO) for discovering new antibiotics. As a result, phytochemicals have emerged as a potential alternative to combat resistant strains, since they can exert antimicrobial activity through various mechanisms and, at the same time, represent a more natural and safe option. This study analyzes the antimicrobial effects of guava leaf extract in ten clinical isolates of extensively drug-resistant (XDR) , using the agar diffusion technique and the microdilution method to determine the minimum inhibitory concentrations (MICs).
View Article and Find Full Text PDFJ Orthop Surg Res
January 2025
Hamidiye Medicine Faculty, Department of Medical Biology, University of Health Sciences, Istanbul, Türkiye.
Background: Despite their biocompatibility, metal implants are susceptible to infections, leading to implant failure and patient complications. The purpose of this study was to investigate the antibacterial potential of antibiotic-coated titanium and stainless steel implants.
Methods: The study was designed as an experimental in vitro study, and it was conducted at the Department of Immunology of the University of Health Sciences, Istanbul/ Turkiye in January and February 2024.
Microb Pathog
January 2025
Antimicrobial Research Unit, College of Health Sciences, University of KwaZulu-Natal, Durban 4000, South Africa; School of Pharmacy, University of Jordan, Amman 11942, Jordan.
Unlabelled: The study investigated the resistome, virulome and mobilome of multidrug resistant (MDR) Klebsiella pneumoniae and Klebsiella oxytoca clinical isolates.
Methods: A total of 46 suspected Klebsiella species (spp.) were collected from blood cultures within the uMgungundlovu District in the KwaZulu-Natal Province.
J Infect Public Health
January 2025
Department of Biochemistry, Faculty of Science, University of Dschang, Dschang, Cameroon. Electronic address:
Background: Pseudomonas aeruginosa is an opportunistic Gram-negative bacterium capable of causing severe infections in immunocompromised patients such as those suffering from chronic kidney disease (CKD). This study aimed to determine the resistance profile of Pseudomonas aeruginosa, and the prevalence of extended-spectrum β-lactamase (ESBL) resistance genes in patients with chronic kidney disease.
Methods: The prevalence of Pseudomonas aeruginosa was investigated in 458 patients, including 197 CKD patients and 261 patients suffering from gastrointestinal infections.
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