Poly(lactic-co-glycolic) acid (PLGA)-based NPs are currently considered among the most promising drug carriers, nevertheless their use in plants has never been investigated. In this work, for the first time, we demonstrated the ability of PLGA NPs to cross the plant cell wall and membrane of Vitis vinifera cell cultures and grapevine-pathogenic fungi. By means of fluorescence microscopy, we established that PLGA NPs can enter in grapevine leaf tissues through stomata openings and that they can be absorbed by the roots and transported to the shoot through vascular tissues. TEM analysis on cultured cells showed that NPs ≤ 50 nm could enter cells, while bigger ones remained attached to the cell wall. Viability tests demonstrated that PLGA NPs ...
Successful defence of plants against colonisation by fungal pathogens depends on the ability to prev...
Cell-associated lipopolysaccharides (LPS) were extracted by the phenol-chloroform-petroleum ether ex...
Background and Aims: Food contamination by fungi threatens human health. Active packaging containing...
Poly(lactic-co-glycolic) acid (PLGA)- based NPs are currently considered among the most promising dr...
In recent years, NPs have been applied in several fields of biomedicine. Only recently researchers h...
In the last years, many studies on absorption and cell uptake of nanoparticles by plants have been c...
In recent decades, there has been considerable research interest in the field of drug delivery for s...
Polymeric nanoparticle-based carriers are promising agents to deliver drugs to cells. Vitis vinifera...
Researchers have only recently begun to explore the potential of nanocarriers in the field of plant ...
P474 Poly Lactic-co-Glycolic Acid (PLGA) uptake by Candida albicans cells as biodegradable controll...
Spraying of agrochemicals (pesticides, fertilizers) causes environmental pollution on a million-ton ...
Polymeric nanoparticle-based carriers are promising agents to deliver drugs to cells. Vitis vinifera...
The objective of the present work was to synthesize biopolymeric nanoparticles (NPs) entrapping the ...
Botrytis cinerea, responsible for grey mold diseases, is a pathogen with a broad host range, afectin...
Poly-(lactic-co-glycolic) acid (PLGA) is a biodegradable, biosafe, and biocompatible copolymer. The ...
Successful defence of plants against colonisation by fungal pathogens depends on the ability to prev...
Cell-associated lipopolysaccharides (LPS) were extracted by the phenol-chloroform-petroleum ether ex...
Background and Aims: Food contamination by fungi threatens human health. Active packaging containing...
Poly(lactic-co-glycolic) acid (PLGA)- based NPs are currently considered among the most promising dr...
In recent years, NPs have been applied in several fields of biomedicine. Only recently researchers h...
In the last years, many studies on absorption and cell uptake of nanoparticles by plants have been c...
In recent decades, there has been considerable research interest in the field of drug delivery for s...
Polymeric nanoparticle-based carriers are promising agents to deliver drugs to cells. Vitis vinifera...
Researchers have only recently begun to explore the potential of nanocarriers in the field of plant ...
P474 Poly Lactic-co-Glycolic Acid (PLGA) uptake by Candida albicans cells as biodegradable controll...
Spraying of agrochemicals (pesticides, fertilizers) causes environmental pollution on a million-ton ...
Polymeric nanoparticle-based carriers are promising agents to deliver drugs to cells. Vitis vinifera...
The objective of the present work was to synthesize biopolymeric nanoparticles (NPs) entrapping the ...
Botrytis cinerea, responsible for grey mold diseases, is a pathogen with a broad host range, afectin...
Poly-(lactic-co-glycolic) acid (PLGA) is a biodegradable, biosafe, and biocompatible copolymer. The ...
Successful defence of plants against colonisation by fungal pathogens depends on the ability to prev...
Cell-associated lipopolysaccharides (LPS) were extracted by the phenol-chloroform-petroleum ether ex...
Background and Aims: Food contamination by fungi threatens human health. Active packaging containing...