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Kiválaszt Kör alakú gondolatjel candida sap tr146 cells Enumerate Hoppá szex

Fungal invasion of epithelial cells - ScienceDirect
Fungal invasion of epithelial cells - ScienceDirect

Frontiers | Candida albicans: The Ability to Invade Epithelial Cells and  Survive under Oxidative Stress Is Unlinked to Hyphal Length
Frontiers | Candida albicans: The Ability to Invade Epithelial Cells and Survive under Oxidative Stress Is Unlinked to Hyphal Length

Microorganisms | Free Full-Text | Cooperative Role of MAPK Pathways in the  Interaction of Candida albicans with the Host Epithelium
Microorganisms | Free Full-Text | Cooperative Role of MAPK Pathways in the Interaction of Candida albicans with the Host Epithelium

Pathogens | Free Full-Text | Candida albicans Interactions with Mucosal  Surfaces during Health and Disease
Pathogens | Free Full-Text | Candida albicans Interactions with Mucosal Surfaces during Health and Disease

From Attachment to Damage: Defined Genes of Candida albicans Mediate  Adhesion, Invasion and Damage during Interaction with Oral Epithelial Cells  | PLOS ONE
From Attachment to Damage: Defined Genes of Candida albicans Mediate Adhesion, Invasion and Damage during Interaction with Oral Epithelial Cells | PLOS ONE

Candida albicans Cell Wall Glycosylation May Be Indirectly Required for  Activation of Epithelial Cell Proinflammatory Responses | Infection and  Immunity
Candida albicans Cell Wall Glycosylation May Be Indirectly Required for Activation of Epithelial Cell Proinflammatory Responses | Infection and Immunity

Targeting adhesion in fungal pathogen Candida albicans | Future Medicinal  Chemistry
Targeting adhesion in fungal pathogen Candida albicans | Future Medicinal Chemistry

In vitro effects of commercial mouthwashes on several virulence traits of  Candida albicans, viridans streptococci and Enterococcus faecalis  colonizing the oral cavity | PLOS ONE
In vitro effects of commercial mouthwashes on several virulence traits of Candida albicans, viridans streptococci and Enterococcus faecalis colonizing the oral cavity | PLOS ONE

Microorganisms | Free Full-Text | Cooperative Role of MAPK Pathways in the  Interaction of Candida albicans with the Host Epithelium
Microorganisms | Free Full-Text | Cooperative Role of MAPK Pathways in the Interaction of Candida albicans with the Host Epithelium

Candidalysin activates innate epithelial immune responses via epidermal  growth factor receptor | Nature Communications
Candidalysin activates innate epithelial immune responses via epidermal growth factor receptor | Nature Communications

Sulfone derivatives enter the cytoplasm of Candida albicans sessile cells -  ScienceDirect
Sulfone derivatives enter the cytoplasm of Candida albicans sessile cells - ScienceDirect

Candida albicans commensalism in the oral mucosa is favoured by limited  virulence and metabolic adaptation | PLOS Pathogens
Candida albicans commensalism in the oral mucosa is favoured by limited virulence and metabolic adaptation | PLOS Pathogens

Oral epithelial cells orchestrate innate type 17 responses to Candida  albicans through the virulence factor candidalysin | Science Immunology
Oral epithelial cells orchestrate innate type 17 responses to Candida albicans through the virulence factor candidalysin | Science Immunology

Frontiers | Candida albicans Sap6 Initiates Oral Mucosal Inflammation via  the Protease Activated Receptor PAR2
Frontiers | Candida albicans Sap6 Initiates Oral Mucosal Inflammation via the Protease Activated Receptor PAR2

Oral epithelial cells orchestrate innate type 17 responses to Candida  albicans through the virulence factor candidalysin | Science Immunology
Oral epithelial cells orchestrate innate type 17 responses to Candida albicans through the virulence factor candidalysin | Science Immunology

Sulfone derivatives enter the cytoplasm of Candida albicans sessile cells -  ScienceDirect
Sulfone derivatives enter the cytoplasm of Candida albicans sessile cells - ScienceDirect

Microorganisms | Free Full-Text | Cooperative Role of MAPK Pathways in the  Interaction of Candida albicans with the Host Epithelium
Microorganisms | Free Full-Text | Cooperative Role of MAPK Pathways in the Interaction of Candida albicans with the Host Epithelium

JoF | Free Full-Text | Genetic Manipulation as a Tool to Unravel Candida  parapsilosis Species Complex Virulence and Drug Resistance: State of the Art
JoF | Free Full-Text | Genetic Manipulation as a Tool to Unravel Candida parapsilosis Species Complex Virulence and Drug Resistance: State of the Art

From Attachment to Damage: Defined Genes of Candida albicans Mediate  Adhesion, Invasion and Damage during Interaction with Oral Epithelial Cells  | PLOS ONE
From Attachment to Damage: Defined Genes of Candida albicans Mediate Adhesion, Invasion and Damage during Interaction with Oral Epithelial Cells | PLOS ONE

C. albicans yeasts were added to TR146 monolayers and incubated under... |  Download Scientific Diagram
C. albicans yeasts were added to TR146 monolayers and incubated under... | Download Scientific Diagram

Frontiers | Candida albicans Sap6 Initiates Oral Mucosal Inflammation via  the Protease Activated Receptor PAR2
Frontiers | Candida albicans Sap6 Initiates Oral Mucosal Inflammation via the Protease Activated Receptor PAR2

Sulfone derivatives enter the cytoplasm of Candida albicans sessile cells -  ScienceDirect
Sulfone derivatives enter the cytoplasm of Candida albicans sessile cells - ScienceDirect

Comparison of the response of two oral epithelial cell lines to C.... |  Download Scientific Diagram
Comparison of the response of two oral epithelial cell lines to C.... | Download Scientific Diagram

Cellular interactions of Candida albicans with human oral epithelial cells  and enterocytes - Dalle - 2010 - Cellular Microbiology - Wiley Online  Library
Cellular interactions of Candida albicans with human oral epithelial cells and enterocytes - Dalle - 2010 - Cellular Microbiology - Wiley Online Library

Frontiers | Candida albicans Sap6 Initiates Oral Mucosal Inflammation via  the Protease Activated Receptor PAR2
Frontiers | Candida albicans Sap6 Initiates Oral Mucosal Inflammation via the Protease Activated Receptor PAR2

Distinct Roles of Candida albicans-Specific Genes in Host-Pathogen  Interactions | Eukaryotic Cell
Distinct Roles of Candida albicans-Specific Genes in Host-Pathogen Interactions | Eukaryotic Cell

Targeting adhesion in fungal pathogen Candida albicans | Future Medicinal  Chemistry
Targeting adhesion in fungal pathogen Candida albicans | Future Medicinal Chemistry