Below are the most recent publications written about "Candida albicans" by people in Profiles.
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Kwaku GN, Jensen KN, Simaku P, Floyd DJ, Saelens JW, Reardon CM, Ward RA, Basham KJ, Hepworth OW, Vyas TD, Zamith-Miranda D, Nosanchuk JD, Vyas JM, Brown Harding H. Extracellular vesicles from diverse fungal pathogens induce species-specific and endocytosis-dependent immunomodulation. PLoS Pathog. 2025 May; 21(5):e1012879.
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Brown Harding H, Kwaku GN, Reardon CM, Khan NS, Zamith-Miranda D, Zarnowski R, Tam JM, Bohaen CK, Richey L, Mosallanejad K, Crossen AJ, Reedy JL, Ward RA, Vargas-Blanco DA, Basham KJ, Bhattacharyya RP, Nett JE, Mansour MK, van de Veerdonk FL, Kumar V, Kagan JC, Andes DR, Nosanchuk JD, Vyas JM. Candida albicans extracellular vesicles trigger type I IFN signalling via cGAS and STING. Nat Microbiol. 2024 Jan; 9(1):95-107.
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Datta A, Das D, Nett JE, Vyas JM, Lionakis MS, Thangamani S. Differential skin immune responses in mice intradermally infected with Candida auris and Candida albicans. Microbiol Spectr. 2023 Dec 12; 11(6):e0221523.
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Whitley SK, Li M, Kashem SW, Hirai T, Igy?rt? BZ, Knizner K, Ho J, Ferris LK, Weaver CT, Cua DJ, McGeachy MJ, Kaplan DH. Local IL-23 is required for proliferation and retention of skin-resident memory TH17 cells. Sci Immunol. 2022 11 18; 7(77):eabq3254.
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Reales-Calderon JA, Tso GHW, Tan ASM, Hor PX, B?hme J, Teng KWW, Newell EW, Singhal A, Pavelka N. Gut-Evolved Candida albicans Induces Metabolic Changes in Neutrophils. Front Cell Infect Microbiol. 2021; 11:743735.
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Break TJ, Oikonomou V, Dutzan N, Desai JV, Swidergall M, Freiwald T, Chauss D, Harrison OJ, Alejo J, Williams DW, Pittaluga S, Lee CR, Bouladoux N, Swamydas M, Hoffman KW, Greenwell-Wild T, Bruno VM, Rosen LB, Lwin W, Renteria A, Pontejo SM, Shannon JP, Myles IA, Olbrich P, Ferr? EMN, Schmitt M, Martin D, Barber DL, Solis NV, Notarangelo LD, Serreze DV, Matsumoto M, Hickman HD, Murphy PM, Anderson MS, Lim JK, Holland SM, Filler SG, Afzali B, Belkaid Y, Moutsopoulos NM, Lionakis MS. Aberrant type 1 immunity drives susceptibility to mucosal fungal infections. Science. 2021 01 15; 371(6526).
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Mirhakkak MH, Sch?uble S, Klassert TE, Brunke S, Brandt P, Loos D, Uribe RV, Senne de Oliveira Lino F, Ni Y, Vylkova S, Slevogt H, Hube B, Weiss GJ, Sommer MOA, Panagiotou G. Metabolic modeling predicts specific gut bacteria as key determinants for Candida albicans colonization levels. ISME J. 2021 05; 15(5):1257-1270.
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Alfaifi AA, Lin WS, Aldhaian BA, Levon JA, Gregory RL. Impact of caffeine on metabolic activity and biofilm formation of Candida albicans on acrylic denture resin in the presence of nicotine. J Prosthet Dent. 2020 Jun; 123(6):875-879.
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Tam JM, Reedy JL, Lukason DP, Kuna SG, Acharya M, Khan NS, Negoro PE, Xu S, Ward RA, Feldman MB, Dutko RA, Jeffery JB, Sokolovska A, Wivagg CN, Lassen KG, Le Naour F, Matzaraki V, Garner EC, Xavier RJ, Kumar V, van de Veerdonk FL, Netea MG, Miranti CK, Mansour MK, Vyas JM. Tetraspanin CD82 Organizes Dectin-1 into Signaling Domains to Mediate Cellular Responses to Candida albicans. J Immunol. 2019 06 01; 202(11):3256-3266.
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Carneiro H, Rasalingam R. Fungal prosthetic aortic valve endocarditis and endarteritis: An unusual cause of aortic root vegetations. Echocardiography. 2019 02; 36(2):401-405.