Cytotoxic and Antibacterial Activity of Yttrium Oxide Nanoparticle Y2O3 Against Serratia Fonticuli and Citrobacter Kasseri Isolated fFrom Cholangitis Patients

نویسندگان

1 College of Science, Mustan siryah University; Iraq

2 Al-kindy college of medicine

3 Medical laboratory Techniques Department, College of Medical and Health Technology, Middle Technical University, Baghdad, Iraq

4 Alfarahidi University, Baghdad, Iraq

doi
10.22052/JNS.2026.01.013
چکیده

The rise of antibiotic-resistant bacteria necessitates the exploration of novel antimicrobial agents. Yttrium oxide nanoparticles (Y₂O₃) have shown potential due to their unique physicochemical properties and antibacterial activities against various pathogens. This study investigates the cytotoxic and antibacterial effects of Y₂O₃ nanoparticles against Serratia fonticuli and Citrobacter koseri, bacteria isolated from cholangitis patients. Bacterial strains were isolated from bile specimens and confirmed using standard microbiological techniques. The methods of X-ray diffraction (XRD), (SEM), and Frequency transform-infrared spectroscopic (FT-IR) were used to characterize YO₃ particles. Using a microdilution technique, the minimum concentrations of inhibition (MICS) were calculated for a variety of nanoparticles concentrations. MTT and LDH tests were used to evaluate mortality on cell lines derived from humans. Substantial antimicrobial activity was demonstrated by Y₂O₃ small particles, which efficiently broke down microbial cellular membranes and produced reactive oxygen molecules (ROS). At different doses, the MIC values showed strong suppression of both species of bacteria. Different reactions from cells of various types were shown by viability experiments, indicating that Y₂O₃ nanomaterials might be less harmful at particular dosages. Yttrium nanoparticles made of oxide show great promise as disinfectants versus cholangitis-causing microorganisms that are sensitive to antibiotics. In order to promote their use in hospitals, our work emphasizes the necessity of more research into the protective characteristics and mechanism for action of Y2O₃ particles.