I would like to thank the organizers and sponsors of the 5th Clinical Advances in UTI (@GlobalUti & @nationwidekids) for allowing me share and speak with my work.
Please reach out if you have any questions or suggestions!
@Braden_Hanson
or
email: [email protected]
(6b/🧵) Braden is an enthusiastic scientist and a self-proclaimed lab rat 🐁 who LOVES conducting research!
His talk is called "Identification of A Copper-responsive Small Molecule Inhibitor of
Uropathogenic E. coli."
(6b/🧵) Braden is an enthusiastic scientist and a self-proclaimed lab rat 🐁 who LOVES conducting research!
His talk is called "Identification of A Copper-responsive Small Molecule Inhibitor of
Uropathogenic E. coli."
UTIs are becoming increasingly difficult to treat—alternatives to antibiotics are needed. Researchers identified a copper-responsive molecule that inhibits UPEC, the main cause of UTIs, as well as other bacteria of medical significance. https://t.co/jlLaiVVwGD #JBacteriology
UTIs are becoming increasingly difficult to treat—alternatives to antibiotics are needed. Researchers identified a copper-responsive molecule that inhibits UPEC, the main cause of UTIs, as well as other bacteria of medical significance. https://t.co/jlLaiVVwGD #JBacteriology
4. First Author Publication: Identification of a copper-responsive small molecule inhibitor of Uropathogenic E. coli. Published in Journal of Bacteriology (2024). https://t.co/t0jH7M1G9G
3. Co-author Publication: Vaginal Inoculation of Uropathogenic Escherichia coli during Estrus Leada to Genital and Renal Colonization. Published in Infection and Immunity (2022). https://t.co/4PayomFNXY
An asymptomatic bacteriuria-causing E. coli strain prevents UTI by suppressing the colonization of UPEC in a milieu- and cell-density-dependent manner, highlighting the importance of metabolites and nutrients in human urine. Learn more in #IAIJournal: https://t.co/g4JJ1U7jaA
An asymptomatic bacteriuria-causing E. coli strain prevents UTI by suppressing the colonization of UPEC in a milieu- and cell-density-dependent manner, highlighting the importance of metabolites and nutrients in human urine. Learn more in #IAIJournal: https://t.co/g4JJ1U7jaA
1. Hyperglucosuria Induced by Dapagliflozin Augmente Bacterial Colonization in the Murine Urinary Tract. Published in Diabetes, Obesity, and Metabolism (2020).