Research outputs
2025
A water-soluble poly(trisulfide) with antimicrobial activity
An<i> In</i><i> Vitro</i> Bladder Model of Catheter-Associated Urinary Tract Infection
Clarke, O. E., Bennett, V., & Jones, B. V. (2025). An<i> In</i><i> Vitro</i> Bladder Model of Catheter-Associated Urinary Tract Infection. JOVE-JOURNAL OF VISUALIZED EXPERIMENTS, (220). doi:10.3791/67966
Prevalence of mutations associated with tolerance to chlorhexidine and other cationic biocides among<i> Proteus</i><i> mirabilis</i> clinical isolates
Bennett, V., Clarke, O. E., Ravari, M. Y., Winslow, J. D., Wand, M. E., Preston, A., . . . Jones, B. V. (2025). Prevalence of mutations associated with tolerance to chlorhexidine and other cationic biocides among<i> Proteus</i><i> mirabilis</i> clinical isolates. MICROBIOLOGY-SGM, 171(7). doi:10.1099/mic.0.001580
2023
Infection responsive coatings to reduce biofilm formation and encrustation of urinary catheters
Slate, A. J., Clarke, O. E., Kerio, M., Nzakizwanayo, J., Patel, B. A., & Jones, B. V. (2023). Infection responsive coatings to reduce biofilm formation and encrustation of urinary catheters. JOURNAL OF APPLIED MICROBIOLOGY, 134(6). doi:10.1093/jambio/lxad121
Lipopolysaccharide structure modulates cationic biocide susceptibility and crystalline biofilm formation in <i>Proteus mirabilis</i>
Clarke, O. E., Pelling, H., Bennett, V., Matsumoto, T., Gregory, G. E., Nzakizwanayo, J., . . . Jones, B. V. (2023). Lipopolysaccharide structure modulates cationic biocide susceptibility and crystalline biofilm formation in <i>Proteus mirabilis</i>. FRONTIERS IN MICROBIOLOGY, 14. doi:10.3389/fmicb.2023.1150625