Literature DB >> 21063074

Organ-specific innate immune responses in a mouse model of invasive candidiasis.

Michail S Lionakis1, Jean K Lim, Chyi-Chia Richard Lee, Philip M Murphy.   

Abstract

In a fatal mouse model of invasive candidiasis (IC), fungal burden changes with variable dynamics in the kidney, brain, spleen, and liver and declines in all organs except for the kidney, which inexorably loses function. Since leukocytes are required to control Candida, we hypothesized that differential leukocyte infiltration determines organ-specific outcome of the infection. We defined leukocyte accumulation in the blood, kidney, brain, spleen, and liver after infection using fluorescent-activated cell sorting (FACS) and immunohistochemistry. Accumulation of Ly6c(int)CD11b(+) neutrophils predominated in all organs except the brain, where CD45(int)CD11b(+)CD11c(-) microglia were the major leukocytes detected, surrounding foci of invading Candida. Significantly more neutrophils accumulated in the spleen and liver than in the kidney during the first 24 h after infection, when neutrophil presence is critical for Candida control. Conversely, at later time points only the kidney continued to accumulate neutrophils, associated with immunopathology and organ failure. The distribution of neutrophils was completely different in each organ, with large abscesses exclusively forming in the kidney. Candida filamentation, an essential virulence factor, was seen in the kidney but not in the spleen or liver. IC induced Ly6c(hi)CD11b(+) inflammatory monocyte and NK1.1(+) cell expansion in the blood and all organs tested, and MHCII(+)F4/80(+)CD11c(-) macrophage accumulation, mainly in the spleen and liver. This study is the first detailed analysis of leukocyte subsets accumulating in different target organs during IC. The results delineate immune responses to the same pathogen that are highly idiosyncratic for each organ tested. The work provides novel insights into the balance between effective host defense and immunopathology in IC.
Copyright © 2010 S. Karger AG, Basel.

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Year:  2010        PMID: 21063074      PMCID: PMC3072204          DOI: 10.1159/000321157

Source DB:  PubMed          Journal:  J Innate Immun        ISSN: 1662-811X            Impact factor:   7.349


  37 in total

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Journal:  J Clin Invest       Date:  2000-04       Impact factor: 14.808

5.  Use of a genetically engineered strain to evaluate the pathogenic potential of yeast cell and filamentous forms during Candida albicans systemic infection in immunodeficient mice.

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Journal:  Infect Immun       Date:  2007-10-29       Impact factor: 3.441

6.  Suppression of splenic macrophage Candida albicans phagocytosis following in vivo depletion of natural killer cells in immunocompetent BALB/c mice and T-cell-deficient nude mice.

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8.  CD80+Gr-1+ myeloid cells inhibit development of antifungal Th1 immunity in mice with candidiasis.

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9.  Chemokine receptor CCR5 promotes leukocyte trafficking to the brain and survival in West Nile virus infection.

Authors:  William G Glass; Jean K Lim; Rushina Cholera; Alexander G Pletnev; Ji-Liang Gao; Philip M Murphy
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10.  Dendritic cells discriminate between yeasts and hyphae of the fungus Candida albicans. Implications for initiation of T helper cell immunity in vitro and in vivo.

Authors:  C F d'Ostiani; G Del Sero; A Bacci; C Montagnoli; A Spreca; A Mencacci; P Ricciardi-Castagnoli; L Romani
Journal:  J Exp Med       Date:  2000-05-15       Impact factor: 14.307

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  137 in total

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Authors:  Michail S Lionakis
Journal:  Virulence       Date:  2011 Nov-Dec       Impact factor: 5.882

2.  Restoring glucose uptake rescues neutrophil dysfunction and protects against systemic fungal infection in mouse models of kidney disease.

Authors:  Chetan V Jawale; Kritika Ramani; De-Dong Li; Bianca M Coleman; Rohan S Oberoi; Saran Kupul; Li Lin; Jigar V Desai; Greg M Delgoffe; Michail S Lionakis; Filitsa H Bender; Alexander J Prokopienko; Thomas D Nolin; Sarah L Gaffen; Partha S Biswas
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3.  Increased Resistance to Intradermal Francisella tularensis LVS Infection by Inactivation of the Sts Phosphatases.

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4.  CX3CR1-dependent renal macrophage survival promotes Candida control and host survival.

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Journal:  J Clin Invest       Date:  2013-11-01       Impact factor: 14.808

5.  Ibuprofen potentiates the in vivo antifungal activity of fluconazole against Candida albicans murine infection.

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Journal:  Antimicrob Agents Chemother       Date:  2015-04-06       Impact factor: 5.191

6.  Lymphocyte-driven regional immunopathology in pneumonitis caused by impaired central immune tolerance.

Authors:  Elise M N Ferré; Timothy J Break; Peter D Burbelo; Michael Allgäuer; David E Kleiner; Dakai Jin; Ziyue Xu; Les R Folio; Daniel J Mollura; Muthulekha Swamydas; Wenjuan Gu; Sally Hunsberger; Chyi-Chia R Lee; Anamaria Bondici; Kevin W Hoffman; Jean K Lim; Kerry Dobbs; Julie E Niemela; Thomas A Fleisher; Amy P Hsu; Laquita N Snow; Dirk N Darnell; Samar Ojaimi; Megan A Cooper; Martin Bozzola; Gary I Kleiner; Juan C Martinez; Robin R Deterding; Douglas B Kuhns; Theo Heller; Karen K Winer; Arun Rajan; Steven M Holland; Luigi D Notarangelo; Kevin P Fennelly; Kenneth N Olivier; Michail S Lionakis
Journal:  Sci Transl Med       Date:  2019-06-05       Impact factor: 17.956

7.  Unexpected kidney-restricted role for IL-17 receptor signaling in defense against systemic Candida albicans infection.

Authors:  Kritika Ramani; Chetan V Jawale; Akash H Verma; Bianca M Coleman; Jay K Kolls; Partha S Biswas
Journal:  JCI Insight       Date:  2018-05-03

8.  Cell surface changes in the Candida albicans mitochondrial mutant goa1Δ are associated with reduced recognition by innate immune cells.

Authors:  Xiaodong She; Lulu Zhang; Hui Chen; Richard Calderone; Dongmei Li
Journal:  Cell Microbiol       Date:  2013-03-28       Impact factor: 3.715

9.  Integrin αXβ₂ is a leukocyte receptor for Candida albicans and is essential for protection against fungal infections.

Authors:  Samir Jawhara; Elzbieta Pluskota; Dmitriy Verbovetskiy; Olena Skomorovska-Prokvolit; Edward F Plow; Dmitry A Soloviev
Journal:  J Immunol       Date:  2012-07-27       Impact factor: 5.422

10.  Yeasts Associated with Culex pipiens and Culex theileri Mosquito Larvae and the Effect of Selected Yeast Strains on the Ontogeny of Culex pipiens.

Authors:  A Steyn; F Roets; A Botha
Journal:  Microb Ecol       Date:  2015-11-14       Impact factor: 4.552

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