- Assistant Professor
- CBLS 381
- Phone: 401-874-4034
- Email: kara.eichelberger@uri.edu
- Google Scholar
Biography
Dr. Kara Eichelbergerβs long-standing research interest is studying host-pathogen interactions during infection. She received her PhD in Microbiology and Immunology from the University of North Carolina at Chapel Hill, where her dissertation research focused on elucidating mechanisms of neutrophil dysfunction during primary pneumonic plague. She then completed postdoctoral training at Vanderbilt University Medical Center, investigating how microbe-microbe interactions shape pathogenesis. Dr. Eichelbergerβs research integrates bacterial pathogenesis, fungal physiology, and innate immunology to define how polymicrobial interactions regulate microbial virulence and interactions with host cells. The Eichelberger lab studies how fungal-bacterial interactions govern microbial pathogenesis. We focus on interactions between the fungal pathogen ππ’π―π₯πͺπ₯π’ π’ππ£πͺπ€π’π―π΄ and the bacterial pathogen ππ΅π’π±π©πΊππ°π€π°π€π€πΆπ΄ π’πΆπ³π¦πΆπ΄. π. π’ππ£πͺπ€π’π―π΄ and π. π’πΆπ³π¦πΆπ΄ can be co-isolated from polymicrobial infections, which are associated with enhanced disease severity and treatment recalcitrance. Yet, π. π’ππ£πͺπ€π’π―π΄ and π. π’πΆπ³π¦πΆπ΄ share several overlapping colonization sites as part of the normal microbiota present in humans. This suggests that virulence outcomes of interactions between π. π’ππ£πͺπ€π’π―π΄ and π. π’πΆπ³π¦πΆπ΄ are context dependent. The Eichelberger lab uses molecular and genetic approaches to define how interactions among fungi, bacteria, and host cells shape infectious disease.
Research
- Defining bacterial and fungal mediators of virulence during co-infection
- Characterizing how the host microenvironment influences fungal-bacterial interactions
- Investigating how exposure to fungi and bacteria regulates host cell innate immune responses
Education
Postdoctoral Fellowship, Vanderbilt University Medical Center, Nashville, TN (2020-2026) PhD, University of North Carolina at Chapel Hill, Chapel Hill, NC (2019) BS, Susquehanna University, Selinsgrove, PA (2013)
Selected Publications
Eichelberger KR, Chandrasekaran R, Podar NA, Mei JA, Curry JM, Paul S, Bastarache JA, Torres VJ, Fidel Jr. PL, Peters BM, Cassat JE (2025). ππ’π―π₯πͺπ₯π’ π’ππ£πͺπ€π’π―π΄ activates ππ΅π’π±π©πΊππ°π€π°π€π€πΆπ΄ π’πΆπ³π¦πΆπ΄ virulence regulatory systems to drive toxin-mediated human cell death. PLOS Pathogens 22(8):e1014490.
Paul S, Todd OA, Eichelberger KR, Tkaczyk C, Sellman BR, Noverr MC, Cassat JE, Fidel PL Jr, Peters BM (2024). A fungal metabolic regulator underlies infectious disease synergism during ππ’π―π₯πͺπ₯π’ π’ππ£πͺπ€π’π―π΄-ππ΅π’π±π©πΊππ°π€π°π€π€πΆπ΄ π’πΆπ³π¦πΆπ΄ intra-abdominal co-infection. Nature Communications 15(1):5746.
Eichelberger KR, Paul S, Peters BM, Cassat JE (2023). ππ’π―π₯πͺπ₯π’-bacterial cross-kingdom interactions. Trends in Microbiology 31(12):1287-1299.
Eichelberger KR, Cassat JE (2021) Metabolic adaptations during ππ΅π’π±π©πΊππ°π€π°π€π€πΆπ΄ π’πΆπ³π¦πΆπ΄ and ππ’π―π₯πͺπ₯π’ π’ππ£πͺπ€π’π―π΄ co-infection. Frontiers in Immunology 12:797550.
