A double barrier release system is designed for herbal essential oils which possess tremendous anti-fungal activity, even against drug-resistant fungi. However, their utilization is limited owing to their sensitivity towards pH, temperature and light. Three essential oils (thymol, eugenol, carvacrol) are microencapsulated in polylactic acid shell with a high encapsulation efficiency of 80% in order to leverage their synergistic anti-fungal activity. These microcapsules are further incorporated in bacterial cellulose – a naturally produced nanofibrous hydrogel. This unique system offers double barrier to the release of oils – the polymeric shell and the nanofibrous matrix. The anti-fungal testing was carried out on model fungus- Candida albi...
International audienceAs fragile active components, essential oils should be encapsulated to solve s...
Human skin acts as a physical barrier; however, sometimes the skin gets infected by fungi, which bec...
The main purpose of the research was to develop a bio-based environmentally-friendly antimicrobial p...
Essential oils are environmentally friendly candidates for antimicrobial smart packaging systems. En...
Essential oils are environmentally friendly candidates for antimicrobial smart packaging systems. En...
The invention pertains to develop drug delivery systems is still challenging, and many scientists jo...
The purpose of the present research is enhancing the thyme essential oil efficacy by microencapsulat...
Nowadays, the needs and requirements to avoid infections during surgical operations, require to be ...
This work aims at investigating the effect of the nanoemulsion delivery systems on the antimicrobial...
This work aims at investigating the effect of the nanoemulsion delivery systems on the antimicrobial...
This work aims at investigating the effect of the nanoemulsion delivery systems on the antimicrobial...
Nowadays, the needs and requirements to avoid infections during surgical operations, require to be ...
This work aims at investigating the effect of the nanoemulsion delivery systems on the antimicrobial...
This work aims at investigating the effect of the nanoemulsion delivery systems on the antimicrobial...
International audienceAs fragile active components, essential oils should be encapsulated to solve s...
International audienceAs fragile active components, essential oils should be encapsulated to solve s...
Human skin acts as a physical barrier; however, sometimes the skin gets infected by fungi, which bec...
The main purpose of the research was to develop a bio-based environmentally-friendly antimicrobial p...
Essential oils are environmentally friendly candidates for antimicrobial smart packaging systems. En...
Essential oils are environmentally friendly candidates for antimicrobial smart packaging systems. En...
The invention pertains to develop drug delivery systems is still challenging, and many scientists jo...
The purpose of the present research is enhancing the thyme essential oil efficacy by microencapsulat...
Nowadays, the needs and requirements to avoid infections during surgical operations, require to be ...
This work aims at investigating the effect of the nanoemulsion delivery systems on the antimicrobial...
This work aims at investigating the effect of the nanoemulsion delivery systems on the antimicrobial...
This work aims at investigating the effect of the nanoemulsion delivery systems on the antimicrobial...
Nowadays, the needs and requirements to avoid infections during surgical operations, require to be ...
This work aims at investigating the effect of the nanoemulsion delivery systems on the antimicrobial...
This work aims at investigating the effect of the nanoemulsion delivery systems on the antimicrobial...
International audienceAs fragile active components, essential oils should be encapsulated to solve s...
International audienceAs fragile active components, essential oils should be encapsulated to solve s...
Human skin acts as a physical barrier; however, sometimes the skin gets infected by fungi, which bec...
The main purpose of the research was to develop a bio-based environmentally-friendly antimicrobial p...