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Design, synthesis and biological evaluation of a series of iron and copper  chelating deferiprone derivatives as new agents active against Candida  albicans - ScienceDirect
Design, synthesis and biological evaluation of a series of iron and copper chelating deferiprone derivatives as new agents active against Candida albicans - ScienceDirect

Frontiers | Transcriptome Analysis Uncovers a Link Between Copper  Metabolism, and Both Fungal Fitness and Antifungal Sensitivity in the  Opportunistic Yeast Candida albicans
Frontiers | Transcriptome Analysis Uncovers a Link Between Copper Metabolism, and Both Fungal Fitness and Antifungal Sensitivity in the Opportunistic Yeast Candida albicans

Candida Diet Plan - Last day of the Candida Summit (DAY 7: JULY 15, 2018)  👉 You can listen to the following interviews 👈 Mariza Snyder, DC ***  Finding Life's Purpose and
Candida Diet Plan - Last day of the Candida Summit (DAY 7: JULY 15, 2018) 👉 You can listen to the following interviews 👈 Mariza Snyder, DC *** Finding Life's Purpose and

Antimicrobial Copper: Does It Clean Itself? — Healthcare Surface Consulting
Antimicrobial Copper: Does It Clean Itself? — Healthcare Surface Consulting

Role of Calprotectin in Withholding Zinc and Copper from Candida albicans |  Infection and Immunity
Role of Calprotectin in Withholding Zinc and Copper from Candida albicans | Infection and Immunity

IJMS | Free Full-Text | The Role of Copper Homeostasis at the Host-Pathogen  Axis: From Bacteria to Fungi | HTML
IJMS | Free Full-Text | The Role of Copper Homeostasis at the Host-Pathogen Axis: From Bacteria to Fungi | HTML

Role of Calprotectin in Withholding Zinc and Copper from Candida albicans |  Infection and Immunity
Role of Calprotectin in Withholding Zinc and Copper from Candida albicans | Infection and Immunity

Copper-only superoxide dismutase enzymes and iron starvation stress in  Candida fungal pathogens - Journal of Biological Chemistry
Copper-only superoxide dismutase enzymes and iron starvation stress in Candida fungal pathogens - Journal of Biological Chemistry

The mycoparasitic yeast Saccharomycopsis schoenii predates and kills  multi-drug resistant Candida auris | Scientific Reports
The mycoparasitic yeast Saccharomycopsis schoenii predates and kills multi-drug resistant Candida auris | Scientific Reports

PDF] Plasma membrane architecture protects Candida albicans from killing by  copper | Semantic Scholar
PDF] Plasma membrane architecture protects Candida albicans from killing by copper | Semantic Scholar

Tailoring copper(ii) complexes with pyridine-4,5-dicarboxylate esters for  anti-Candida activity - Dalton Transactions (RSC Publishing)
Tailoring copper(ii) complexes with pyridine-4,5-dicarboxylate esters for anti-Candida activity - Dalton Transactions (RSC Publishing)

Copper Toxicity and Candida - Hair Tissue Mineral Analysis - Hair Test  Experts
Copper Toxicity and Candida - Hair Tissue Mineral Analysis - Hair Test Experts

PDF] Plasma membrane architecture protects Candida albicans from killing by  copper | Semantic Scholar
PDF] Plasma membrane architecture protects Candida albicans from killing by copper | Semantic Scholar

The high copper tolerance of Candida albicans is mediated by a P-type  ATPase | PNAS
The high copper tolerance of Candida albicans is mediated by a P-type ATPase | PNAS

Copper at the Fungal Pathogen-Host Axis* - Journal of Biological Chemistry
Copper at the Fungal Pathogen-Host Axis* - Journal of Biological Chemistry

Amphotericin B–copper(II) complex as a potential agent with higher  antifungal activity against Candida albicans - ScienceDirect
Amphotericin B–copper(II) complex as a potential agent with higher antifungal activity against Candida albicans - ScienceDirect

Transcriptome analysis uncovers a link between copper metabolism, and both  fungal fitness and antifungal sensitivity in the opportunistic yeast Candida  albicans | bioRxiv
Transcriptome analysis uncovers a link between copper metabolism, and both fungal fitness and antifungal sensitivity in the opportunistic yeast Candida albicans | bioRxiv

An Adaptation to Low Copper in Candida albicans Involving SOD Enzymes and  the Alternative Oxidase | PLOS ONE
An Adaptation to Low Copper in Candida albicans Involving SOD Enzymes and the Alternative Oxidase | PLOS ONE

Antimicrobial effect of chitosan–silver–copper nanocomposite on Candida  albicans | SpringerLink
Antimicrobial effect of chitosan–silver–copper nanocomposite on Candida albicans | SpringerLink

IJMS | Free Full-Text | Fructose Induces Fluconazole Resistance in Candida  albicans through Activation of Mdr1 and Cdr1 Transporters | HTML
IJMS | Free Full-Text | Fructose Induces Fluconazole Resistance in Candida albicans through Activation of Mdr1 and Cdr1 Transporters | HTML

The high copper tolerance of <italic toggle='yes'>Candida albicans</italic>  is mediated by a P-type ATPase
The high copper tolerance of <italic toggle='yes'>Candida albicans</italic> is mediated by a P-type ATPase

Frontiers | Iron at the Centre of Candida albicans Interactions
Frontiers | Iron at the Centre of Candida albicans Interactions

Schematic representation of copper homeostasis in Saccharomyces... |  Download Scientific Diagram
Schematic representation of copper homeostasis in Saccharomyces... | Download Scientific Diagram