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könyvtár fogyasztás vékony zawrotniak net response candida sap Sokkal hányados január

Antifungal activity of SAP-treated LL-37 samples. C. albicans cells... |  Download Scientific Diagram
Antifungal activity of SAP-treated LL-37 samples. C. albicans cells... | Download Scientific Diagram

Frontiers | Aspartic Proteases and Major Cell Wall Components in Candida  albicans Trigger the Release of Neutrophil Extracellular Traps
Frontiers | Aspartic Proteases and Major Cell Wall Components in Candida albicans Trigger the Release of Neutrophil Extracellular Traps

JoF | Free Full-Text | Candida albicans—The Virulence Factors and Clinical  Manifestations of Infection
JoF | Free Full-Text | Candida albicans—The Virulence Factors and Clinical Manifestations of Infection

Frontiers | The Role of Candida albicans Virulence Factors in the Formation  of Multispecies Biofilms With Bacterial Periodontal Pathogens
Frontiers | The Role of Candida albicans Virulence Factors in the Formation of Multispecies Biofilms With Bacterial Periodontal Pathogens

JoF | Free Full-Text | More than Just Protein Degradation: The Regulatory  Roles and Moonlighting Functions of Extracellular Proteases Produced by  Fungi Pathogenic for Humans
JoF | Free Full-Text | More than Just Protein Degradation: The Regulatory Roles and Moonlighting Functions of Extracellular Proteases Produced by Fungi Pathogenic for Humans

PDF) Genetic Variability of Candida albicans Sap8 Propeptide in Isolates  from Different Types of Infection
PDF) Genetic Variability of Candida albicans Sap8 Propeptide in Isolates from Different Types of Infection

JoF | Free Full-Text | Candida glabrata: Pathogenicity and Resistance  Mechanisms for Adaptation and Survival
JoF | Free Full-Text | Candida glabrata: Pathogenicity and Resistance Mechanisms for Adaptation and Survival

Role of NAPDH oxidase in Sap-induced netosis. Neutrophils (2.2 × 10 5... |  Download Scientific Diagram
Role of NAPDH oxidase in Sap-induced netosis. Neutrophils (2.2 × 10 5... | Download Scientific Diagram

JoF | Free Full-Text | Repositioning Lopinavir, an HIV Protease Inhibitor,  as a Promising Antifungal Drug: Lessons Learned from Candida albicans—In  Silico, In Vitro and In Vivo Approaches
JoF | Free Full-Text | Repositioning Lopinavir, an HIV Protease Inhibitor, as a Promising Antifungal Drug: Lessons Learned from Candida albicans—In Silico, In Vitro and In Vivo Approaches

Cells | Free Full-Text | Proteinous Components of Neutrophil Extracellular  Traps Are Arrested by the Cell Wall Proteins of Candida albicans during  Fungal Infection, and Can Be Used in the Host Invasion
Cells | Free Full-Text | Proteinous Components of Neutrophil Extracellular Traps Are Arrested by the Cell Wall Proteins of Candida albicans during Fungal Infection, and Can Be Used in the Host Invasion

JoF | Free Full-Text | Repositioning Lopinavir, an HIV Protease Inhibitor,  as a Promising Antifungal Drug: Lessons Learned from Candida albicans—In  Silico, In Vitro and In Vivo Approaches
JoF | Free Full-Text | Repositioning Lopinavir, an HIV Protease Inhibitor, as a Promising Antifungal Drug: Lessons Learned from Candida albicans—In Silico, In Vitro and In Vivo Approaches

JoF | Free Full-Text | A Fun-Guide to Innate Immune Responses to Fungal  Infections
JoF | Free Full-Text | A Fun-Guide to Innate Immune Responses to Fungal Infections

Candida spp. and phagocytosis: multiple evasion mechanisms | SpringerLink
Candida spp. and phagocytosis: multiple evasion mechanisms | SpringerLink

Candida albicans and Candida glabrata triosephosphate isomerase – a  moonlighting protein that can be exposed on the candidal cell surface and  bind to human extracellular matrix proteins | BMC Microbiology | Full Text
Candida albicans and Candida glabrata triosephosphate isomerase – a moonlighting protein that can be exposed on the candidal cell surface and bind to human extracellular matrix proteins | BMC Microbiology | Full Text

IJMS | Free Full-Text | Plant-Derived Substances in the Fight Against  Infections Caused by Candida Species
IJMS | Free Full-Text | Plant-Derived Substances in the Fight Against Infections Caused by Candida Species

JoF | Free Full-Text | A Fun-Guide to Innate Immune Responses to Fungal  Infections
JoF | Free Full-Text | A Fun-Guide to Innate Immune Responses to Fungal Infections

Frontiers | Candida and Complement: New Aspects in an Old Battle
Frontiers | Candida and Complement: New Aspects in an Old Battle

JoF | Free Full-Text | Candida albicans—The Virulence Factors and Clinical  Manifestations of Infection
JoF | Free Full-Text | Candida albicans—The Virulence Factors and Clinical Manifestations of Infection

PDF) Kinin release from human kininogen by 10 aspartic proteases produced  by pathogenic yeast Candida albicans
PDF) Kinin release from human kininogen by 10 aspartic proteases produced by pathogenic yeast Candida albicans

Frontiers | Aspartic Proteases and Major Cell Wall Components in Candida  albicans Trigger the Release of Neutrophil Extracellular Traps
Frontiers | Aspartic Proteases and Major Cell Wall Components in Candida albicans Trigger the Release of Neutrophil Extracellular Traps

Full article: “Candida Albicans Interactions With The Host: Crossing The  Intestinal Epithelial Barrier”
Full article: “Candida Albicans Interactions With The Host: Crossing The Intestinal Epithelial Barrier”

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

Candida spp. and phagocytosis: multiple evasion mechanisms | SpringerLink
Candida spp. and phagocytosis: multiple evasion mechanisms | SpringerLink

Proteomics Unravels Extracellular Vesicles as Carriers of Classical  Cytoplasmic Proteins in Candida albicans | Journal of Proteome Research
Proteomics Unravels Extracellular Vesicles as Carriers of Classical Cytoplasmic Proteins in Candida albicans | Journal of Proteome Research

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

Inactivation of LL-37 during the interplay between C. albicans cells... |  Download Scientific Diagram
Inactivation of LL-37 during the interplay between C. albicans cells... | Download Scientific Diagram

Frontiers | Candida and Complement: New Aspects in an Old Battle
Frontiers | Candida and Complement: New Aspects in an Old Battle