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Vancomycin-functionalized micro- or nanoparticles are frequently used for isolation and enrichment of bacteria from various samples. Theoretically, only Gram-positive organisms should adhere to the functionalized surfaces as vancomycin is an antibiotic targeting a peptidoglycan precursor in the cell wall, which in Gram-negative bacteria is shielded by the outer cell membrane. In the literature, however, it is often reported that Gram-negative bacteria also bind efficiently to the vancomycin-modified particles. The goal of our study was to identify the underlying cause for these different findings. For each species several strains, including patient isolates, were investigated, and effects such as day-to-day reproducibility, particle type, and the antimicrobial effect of vancomycin-coupled beads were explored. Overall, we found that there is a strong preference for binding Gram-positive organisms, but the specific yield is heavily influenced by the strain and experimental conditions. For average yields of approximately 100% were obtained. Respectively, yields of 44% for , 22% for , 17% for and 5% for vancomycin-sensitive were found Yields for Gram-negative species (, , ) and vancomycin-resistant were below 3%. Our results indicate that the interaction between vancomycin and the D-alanine-D-alanine terminus of the peptidoglycan precursor in the bacterial cell wall is the dominant force responsible for the adherence of the bacteria to the particle surface. It needs to be considered though, that other factors, such as the specific molecules presented on the bacterial surface, as well as the pH, and the ion concentrations in the surrounding medium will also play a role, as these can lead to attractive or repulsive electrostatic forces. Last but not least, when using colony forming unit-based quantification for determining the yields, the influence of cell cluster formation and different sensitivities towards the antimicrobial effect of the vancomycin beads between species and strains needs to be considered.
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http://dx.doi.org/10.1039/d4ay01557f | DOI Listing |
Background: Actinomyces graevenitzii is a relatively uncommon Actinomyces species, which is an oral species and predominantly recovered from respiratory locations [1,2]. It is a gram-positive anaerobic bacteria or microaerobic filamentation bacteria, which can induce pyogenic and granulomatous inflammation characterized by swelling and concomitant pus, sinus formation, and the formation of yellow sulfur granules. All tissues and organs can be infected; the most common type involves the neck and face (55%), followed by the abdominal and pelvic cavities (20%).
View Article and Find Full Text PDFCurr Microbiol
September 2025
Laboratory for Structural Analysis of Biomacromolecules, Kazan Scientific Center of Russian Academy of Science, Kazan, Russia.
Phosphorylated structural analogs of Benzalkonium Chloride-diisopropoxyphosphorylmethane (dimethyldodecylammonium) bromide 1 (phosphorylated quaternary ammonium salt) and isopropoxyphosphorylmethane (dimethylalkylammonium) 2 (phosphorylated betaine) were synthesized. The structure of compound 1 was confirmed by single crystal X-ray diffraction study. The antibacterial, antifungal, and ecotoxicological profiles of the synthesized compounds were evaluated against aquatic organisms and flowering plants.
View Article and Find Full Text PDFJ Infect Dev Ctries
August 2025
Division of Epidemiology and Biostatistics, Global Health Department, Faculty of Medicine and Health Sciences, Stellenbosch University, Cape Town, South Africa.
Introduction: Severe bacterial infections cause significant disease burden in developing countries, including Malawi. The situation is compounded by the scarcity of resources, inconsistent availability of antibiotics, and increasing antimicrobial resistance (AMR).
Methodology: This was a descriptive retrospective study where we analyzed blood culture results of pediatric patients admitted to Kamuzu Central Hospital (KCH), Lilongwe, Malawi.
Med Phys
September 2025
Imaging Program, Lawson Research Institute, London, Canada.
Background: The gastrointestinal (GI) microbiota, composed of diverse microbial communities, is essential for physiological processes, including immune modulation. Strains such as Escherichia coli Nissle 1917 support gut health by reducing inflammation and resisting pathogens. Microbial therapies using such strains may restore GI balance and offer alternatives to antibiotics, whose overuse contributes to antibiotic resistance.
View Article and Find Full Text PDFJ Infect Public Health
September 2025
Special Infectious Agents Unit, King Fahd Medical Research Center, King Abdulaziz University, Jeddah, Saudi Arabia; Medical Laboratory Technology Department, Faculty of Applied Medical Sciences, King Abdulaziz University, Jeddah, Saudi Arabia. Electronic address:
Background: Bloodstream infections (BSIs) are a major cause of morbidity and mortality in patients with hematological malignancies (HMs).
Methods: This 14-year retrospective study was conducted at King Abdulaziz University Hospital, Jeddah, Saudi Arabia, from 2007 to 2021. It examined the epidemiological profile, microbial spectrum, resistance patterns, and outcomes of BSIs in HM patients.