David R. Andes

Affiliations: 
Cellular and Molecular Biology University of Wisconsin, Madison, Madison, WI 
Area:
Antifungal drug resistance, Microbiology Biology, Molecular Biology
Website:
https://www.medicine.wisc.edu/infectiousdisease/andesresearch
Google:
"David Andes"
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Publications

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Brown Harding H, Kwaku GN, Reardon CM, et al. (2024) Candida albicans extracellular vesicles trigger type I IFN signalling via cGAS and STING. Nature Microbiology
Jaromin A, Zarnowski R, Markowski A, et al. (2023) Liposomal formulation of a new antifungal hybrid compound provides protection against in the skin colonization model. Antimicrobial Agents and Chemotherapy. e0095523
Massey J, Zarnowski R, Andes D. (2023) Role of the Extracellular Matrix in Candida Biofilm Antifungal Resistance. Fems Microbiology Reviews
Santana DJ, Anku JAE, Zhao G, et al. (2023) A -specific adhesin, Scf1 governs surface association, colonization, and virulence. Science (New York, N.Y.). 381: 1461-1467
Schoen TJ, Calise DG, Bok JW, et al. (2023) Aspergillus fumigatus transcription factor ZfpA regulates hyphal development and alters susceptibility to antifungals and neutrophil killing during infection. Plos Pathogens. 19: e1011152
Beattie SR, Esan T, Zarnowski R, et al. (2023) Novel Keto-Alkyl-Pyridinium Antifungal Molecules Active in Models of Candida albicans Vascular Catheter Infection and Candida auris Skin Colonization. Antimicrobial Agents and Chemotherapy. e0008123
Andes DR, Nett JE. (2023) Analysis of Candida Antifungal Resistance Using Animal Infection Models. Methods in Molecular Biology (Clifton, N.J.). 2658: 225-238
Beattie SR, Esan T, Zarnowski R, et al. (2023) Novel keto-alkyl-pyridinium antifungal molecules active in models of in vivo vascular catheter infection and ex vivo skin colonization. Biorxiv : the Preprint Server For Biology
Cravener MV, Do E, May G, et al. (2023) Reinforcement amid genetic diversity in the Candida albicans biofilm regulatory network. Plos Pathogens. 19: e1011109
Zarnowski R, Sanchez H, Jaromin A, et al. (2022) A common vesicle proteome drives fungal biofilm development. Proceedings of the National Academy of Sciences of the United States of America. 119: e2211424119
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