AIMS:To investigate the potent control of microbial surface contamination of an innovative process which consists in incorporating metal oxide microspheres homogeneously into materials. Spherical microspheres containing zinc and magnesium oxides synthesized via a one-step manufacturing process (Pyrolyse Pulvérisée® ) and incorporated into different plastic matrices were evaluated for their antimicrobial activity according to JIS Z 2801 standard. A significant activity was observed for microsphere-added polyethylene coupons with a reduction of all tested bacteria populations, including Gram negative and Gram positive even expressing acquired antibiotic resistance (Escherichia coli ESBL, Staphylococcus aureus metiR). An antiviral activity hig...
The increasing resistance of pathogenic microorganisms against common treatments requires innovative...
The ongoing worldwide pandemic due to COVID-19 has created awarenesstoward ensuring best practices t...
This thesis describes the incorporation of nanoparticles into polymers as antibacterial surfaces for...
International audienceAIMS:To investigate the potent control of microbial surface contamination of a...
Herein, new polymeric microspheres containing azomethine (PS-OPA, PS-OPA-Pt, PS-OPA-Ni, PS-OPA-Mn an...
There is a growing concern in using zinc oxide nanoparticles (ZnO NPs) for medical devices as altern...
Healthcare-associated infections pose a serious risk for patients, staff, and visitors and are a sev...
With resistant bacteria on the increase, there is a need for new combinations of antimicrobials/bioc...
Infectious diseases caused by drug-resistant microorganisms have become a major contributor for huma...
Healthcare-associated infections pose a serious risk for patients, staff, and visitors and are a sev...
Background: Public health systems today face the dual challenges of controlling infections and curbi...
In this study, a hybrid Ag-ZnO nanostructured micro-filler was synthesized by the drop technique for...
The existence of pathogenic bacteria and fungi on surfaces can be a serious threat to health causing...
Silver (Ag), copper (Cu) and zinc oxide (ZnO) nanoparticles (NPs) were synthesized and antimicrobial...
The increasing resistance of pathogenic microorganisms against common treatments requires innovative...
The ongoing worldwide pandemic due to COVID-19 has created awarenesstoward ensuring best practices t...
This thesis describes the incorporation of nanoparticles into polymers as antibacterial surfaces for...
International audienceAIMS:To investigate the potent control of microbial surface contamination of a...
Herein, new polymeric microspheres containing azomethine (PS-OPA, PS-OPA-Pt, PS-OPA-Ni, PS-OPA-Mn an...
There is a growing concern in using zinc oxide nanoparticles (ZnO NPs) for medical devices as altern...
Healthcare-associated infections pose a serious risk for patients, staff, and visitors and are a sev...
With resistant bacteria on the increase, there is a need for new combinations of antimicrobials/bioc...
Infectious diseases caused by drug-resistant microorganisms have become a major contributor for huma...
Healthcare-associated infections pose a serious risk for patients, staff, and visitors and are a sev...
Background: Public health systems today face the dual challenges of controlling infections and curbi...
In this study, a hybrid Ag-ZnO nanostructured micro-filler was synthesized by the drop technique for...
The existence of pathogenic bacteria and fungi on surfaces can be a serious threat to health causing...
Silver (Ag), copper (Cu) and zinc oxide (ZnO) nanoparticles (NPs) were synthesized and antimicrobial...
The increasing resistance of pathogenic microorganisms against common treatments requires innovative...
The ongoing worldwide pandemic due to COVID-19 has created awarenesstoward ensuring best practices t...
This thesis describes the incorporation of nanoparticles into polymers as antibacterial surfaces for...