Fungal infections are a growing global health and agricultural threat, and current chemical antifungals may induce various side-effects. Thus, nanoparticles are investigated as potential novel antifungals. We report that nanoparticles’ antifungal activity strongly depends on their binding to fungal spores, focusing on the clinically important fungal pathogen Aspergillus fumigatus as well as common plant pathogens, such as Botrytis cinerea. We show that nanoparticle–spore complex formation was enhanced by the small nanoparticle size rather than the material, shape or charge, and could not be prevented by steric surface modifications. Fungal resistance to metal-based nanoparticles, such as ZnO-, Ag-, or CuO-nanoparticles as well as dissolutio...
Nanomedicine manipulates materials at atomic, molecular, and supramolecular scale, with at least one...
Antimicrobial substances may be synthetic, semisynthetic, or of natural origin (i.e., from plants an...
The aim of this study was investigated the antifungal activity of ZnONPs on opportunistic fungi (A.f...
Fungal infections are a growing global health and agricultural threat, and current chemical antifung...
Human pathogenic fungi are responsible for causing a range of infection types including mucosal, ski...
Nanoparticles are widely used as antimicrobial compounds. At sub-lethal concentrations, they may als...
Abstract Background and objective: In recent years, the resistance of opportunistic fungal strains t...
Fusarium species are the primary fungal pathogen affecting agricultural foodstuffs both in crop yiel...
Fungal plant pathogens such as Fusarium graminearum cause severe global economic losses in cereals c...
Cryptococcus neoformans is responsible for cryptococcal infections, which have become a great concer...
Nanoparticles are investigated as novel antibiotics, but are often inefficient in practical applicat...
The use of silver nanoparticles (AgNPs) against various pathogens is now being well recognized in th...
Antimicrobial substances may be synthetic, semisynthetic, or of natural origin (i.e., from plants an...
Over the last years, invasive infections caused by filamentous fungi have constituted a serious thre...
Fungal infections, from mild itching to fatal infections, lead to chronic diseases and death. Antifu...
Nanomedicine manipulates materials at atomic, molecular, and supramolecular scale, with at least one...
Antimicrobial substances may be synthetic, semisynthetic, or of natural origin (i.e., from plants an...
The aim of this study was investigated the antifungal activity of ZnONPs on opportunistic fungi (A.f...
Fungal infections are a growing global health and agricultural threat, and current chemical antifung...
Human pathogenic fungi are responsible for causing a range of infection types including mucosal, ski...
Nanoparticles are widely used as antimicrobial compounds. At sub-lethal concentrations, they may als...
Abstract Background and objective: In recent years, the resistance of opportunistic fungal strains t...
Fusarium species are the primary fungal pathogen affecting agricultural foodstuffs both in crop yiel...
Fungal plant pathogens such as Fusarium graminearum cause severe global economic losses in cereals c...
Cryptococcus neoformans is responsible for cryptococcal infections, which have become a great concer...
Nanoparticles are investigated as novel antibiotics, but are often inefficient in practical applicat...
The use of silver nanoparticles (AgNPs) against various pathogens is now being well recognized in th...
Antimicrobial substances may be synthetic, semisynthetic, or of natural origin (i.e., from plants an...
Over the last years, invasive infections caused by filamentous fungi have constituted a serious thre...
Fungal infections, from mild itching to fatal infections, lead to chronic diseases and death. Antifu...
Nanomedicine manipulates materials at atomic, molecular, and supramolecular scale, with at least one...
Antimicrobial substances may be synthetic, semisynthetic, or of natural origin (i.e., from plants an...
The aim of this study was investigated the antifungal activity of ZnONPs on opportunistic fungi (A.f...