An electrospun hydrophilic non-water-soluble biocompatible polylactic acid (PLA) nonwoven material was used as a delivery system for propolis ethanolic extract (PEE) and silver nanoparticles (AgNPs) that are known for their established antiseptic and antimicrobial activity. Combination of PEE and AgNPs in a single product should provide efficient antimicrobial protection and improved wound healing. Evaluations of PEE and AgNPs on morphology of electrospun materials, release kinetics of AgNPs and phenolic compounds, antibacterial properties, and cytotoxicity of electrospun PLA materials were performed. The presence of PEE or/and AgNPs resulted in denser mats formed by thicker PLA fibers. The average diameter of PLA microfibers was 168±29 nm....
Electrospun membranes have the potential to act as an effective barrier for wounds from the external...
Biofilm bacteria are more resistant to antibiotics than planktonic cells. Propolis possesses antimic...
Background and Purpose Propolis has high potential beneficial bioactive properties such as anti-oxid...
An electrospun hydrophilic non-water-soluble biocompatible polylactic acid (PLA) nonwoven material w...
Antibacterial, antiviral, antifungal, antioxidant, anti-inflammatory, and anticancer activities of p...
Potential antimicrobial efficiency of propolis extract (bee glue) was experimentally studied on gram...
Silver nanoparticles (AgNPs) have been recognized for their outstanding antibacterial activities, wh...
NoNanotechnology can offer new opportunities in the fight against infection. The aim of current work...
The aim of this study was to produce ampicillin trihydrate-loaded poly(lactic acid) (PLA) and PLA/po...
The antibacterial property of silver nanoparticles (Ag-NPs) and the antioxidant activity of Vitamin ...
The growth of population and increase in diseases that cause an enormous demand for biomedical mater...
The development of biomedical systems with antimicrobial and antibiofilm properties is a difficult m...
Electrospinning has recently emerged as a leading technique for the formation of nanofibrous structu...
The high number of biomaterial associated infections demands new strategies to prevent this problem....
Spherical and homogenous microparticles of poly(ε-caprolactone) (PCL), containing propolis were prep...
Electrospun membranes have the potential to act as an effective barrier for wounds from the external...
Biofilm bacteria are more resistant to antibiotics than planktonic cells. Propolis possesses antimic...
Background and Purpose Propolis has high potential beneficial bioactive properties such as anti-oxid...
An electrospun hydrophilic non-water-soluble biocompatible polylactic acid (PLA) nonwoven material w...
Antibacterial, antiviral, antifungal, antioxidant, anti-inflammatory, and anticancer activities of p...
Potential antimicrobial efficiency of propolis extract (bee glue) was experimentally studied on gram...
Silver nanoparticles (AgNPs) have been recognized for their outstanding antibacterial activities, wh...
NoNanotechnology can offer new opportunities in the fight against infection. The aim of current work...
The aim of this study was to produce ampicillin trihydrate-loaded poly(lactic acid) (PLA) and PLA/po...
The antibacterial property of silver nanoparticles (Ag-NPs) and the antioxidant activity of Vitamin ...
The growth of population and increase in diseases that cause an enormous demand for biomedical mater...
The development of biomedical systems with antimicrobial and antibiofilm properties is a difficult m...
Electrospinning has recently emerged as a leading technique for the formation of nanofibrous structu...
The high number of biomaterial associated infections demands new strategies to prevent this problem....
Spherical and homogenous microparticles of poly(ε-caprolactone) (PCL), containing propolis were prep...
Electrospun membranes have the potential to act as an effective barrier for wounds from the external...
Biofilm bacteria are more resistant to antibiotics than planktonic cells. Propolis possesses antimic...
Background and Purpose Propolis has high potential beneficial bioactive properties such as anti-oxid...