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Respins amintiri rămas candida infection in mouse cytokines asigurare zenit General

Murine model of colonization with fungal pathogen Candida auris to explore  skin tropism, host risk factors and therapeutic strategies - ScienceDirect
Murine model of colonization with fungal pathogen Candida auris to explore skin tropism, host risk factors and therapeutic strategies - ScienceDirect

Proteome Profiler Mouse Cytokine Array Kit, Panel A (ARY006): R&D Systems
Proteome Profiler Mouse Cytokine Array Kit, Panel A (ARY006): R&D Systems

PDF) Increased susceptibility to systemic candidiasis in interleukin-6  deficient mice 1: IL6−/− mice are more susceptible to C. albicans infection
PDF) Increased susceptibility to systemic candidiasis in interleukin-6 deficient mice 1: IL6−/− mice are more susceptible to C. albicans infection

Aberrant type 1 immunity drives susceptibility to mucosal fungal infections  | Science
Aberrant type 1 immunity drives susceptibility to mucosal fungal infections | Science

Blockade ofthe negative co-stimulatory molecules PD-1 and CTLA-4 improves  survival in primary and secondary fungal sepsis | Critical Care | Full Text
Blockade ofthe negative co-stimulatory molecules PD-1 and CTLA-4 improves survival in primary and secondary fungal sepsis | Critical Care | Full Text

Immunosurveillance of Candida albicans commensalism by the adaptive immune  system | Mucosal Immunology
Immunosurveillance of Candida albicans commensalism by the adaptive immune system | Mucosal Immunology

Gastrointestinal colonisation and systemic spread of Candida albicans in  mice treated with antibiotics and prednisolone - ScienceDirect
Gastrointestinal colonisation and systemic spread of Candida albicans in mice treated with antibiotics and prednisolone - ScienceDirect

Frontiers | Pathogenic Fungal Infection in the Lung
Frontiers | Pathogenic Fungal Infection in the Lung

JoF | Free Full-Text | Immune Sensing of Candida albicans
JoF | Free Full-Text | Immune Sensing of Candida albicans

T Cell Antifungal Immunity and the Role of C-Type Lectin Receptors: Trends  in Immunology
T Cell Antifungal Immunity and the Role of C-Type Lectin Receptors: Trends in Immunology

Pathogens | Free Full-Text | Oropharyngeal Candidiasis in HIV Infection:  Analysis of Impaired Mucosal Immune Response to Candida albicans in Mice  Expressing the HIV-1 Transgene
Pathogens | Free Full-Text | Oropharyngeal Candidiasis in HIV Infection: Analysis of Impaired Mucosal Immune Response to Candida albicans in Mice Expressing the HIV-1 Transgene

Genetic Control of Susceptibility to Infection with Candida albicans in  Mice | PLOS ONE
Genetic Control of Susceptibility to Infection with Candida albicans in Mice | PLOS ONE

JoF | Free Full-Text | Innate Immunity to Mucosal Candida Infections
JoF | Free Full-Text | Innate Immunity to Mucosal Candida Infections

Frontiers | New Insights in Candida albicans Innate Immunity at the Mucosa:  Toxins, Epithelium, Metabolism, and Beyond
Frontiers | New Insights in Candida albicans Innate Immunity at the Mucosa: Toxins, Epithelium, Metabolism, and Beyond

Levels of different cytokines in the vaginal lavages of wild type... |  Download Scientific Diagram
Levels of different cytokines in the vaginal lavages of wild type... | Download Scientific Diagram

Full article: Adaptive immune responses to Candida albicans infection
Full article: Adaptive immune responses to Candida albicans infection

JoF | Free Full-Text | Systemic Infection by Non-albicans Candida Species  Affects the Development of a Murine Model of Multiple Sclerosis
JoF | Free Full-Text | Systemic Infection by Non-albicans Candida Species Affects the Development of a Murine Model of Multiple Sclerosis

TRAF1 suppresses antifungal immunity through CXCL1-mediated neutrophil  recruitment during Candida albicans intradermal infection | Cell  Communication and Signaling | Full Text
TRAF1 suppresses antifungal immunity through CXCL1-mediated neutrophil recruitment during Candida albicans intradermal infection | Cell Communication and Signaling | Full Text

Progranulin aggravates lethal Candida albicans sepsis by regulating  inflammatory response and antifungal immunity | PLOS Pathogens
Progranulin aggravates lethal Candida albicans sepsis by regulating inflammatory response and antifungal immunity | PLOS Pathogens

EphA2 Is a Neutrophil Receptor for Candida albicans that Stimulates  Antifungal Activity during Oropharyngeal Infection - ScienceDirect
EphA2 Is a Neutrophil Receptor for Candida albicans that Stimulates Antifungal Activity during Oropharyngeal Infection - ScienceDirect

Myeloid cell deficiency of p38γ/p38δ protects against candidiasis and  regulates antifungal immunity | EMBO Molecular Medicine
Myeloid cell deficiency of p38γ/p38δ protects against candidiasis and regulates antifungal immunity | EMBO Molecular Medicine

Data on autophagy markers and anti-candida cytokines expression in mice in  response to vaginal infection of Candida albicans - ScienceDirect
Data on autophagy markers and anti-candida cytokines expression in mice in response to vaginal infection of Candida albicans - ScienceDirect

Immune defence against Candida fungal infections | Nature Reviews Immunology
Immune defence against Candida fungal infections | Nature Reviews Immunology

Paeoniflorin augments systemic Candida albicans infection through  inhibiting Th1 and Th17 cell expression in a mouse model - ScienceDirect
Paeoniflorin augments systemic Candida albicans infection through inhibiting Th1 and Th17 cell expression in a mouse model - ScienceDirect

Experimental Mouse Models of Disseminated Candida auris Infection | mSphere
Experimental Mouse Models of Disseminated Candida auris Infection | mSphere