1. Propiconazole nanoencapsulation in biodegradable polymers to obtain pesticide controlled delivery systems
- Author
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Juan Luis Monribot Villanueva, José Benjamín Rodríguez Haas, José Luis Olivares Romero, Felipe Barrera Méndez, Israel Bonilla Landa, Diana Sánchez Rangel, and Diter Augusto Miranda Sánchez
- Subjects
Active ingredient ,0303 health sciences ,Chemistry ,Environmental pollution ,04 agricultural and veterinary sciences ,General Chemistry ,Pesticide ,Pulp and paper industry ,Biodegradable polymer ,Lactic acid ,Fungicide ,Propiconazole ,03 medical and health sciences ,chemistry.chemical_compound ,Controlled delivery ,040102 fisheries ,0401 agriculture, forestry, and fisheries ,030304 developmental biology - Abstract
The nanoencapsulation of pesticides in biodegradable polymers confers several advantages to conventional agrochemicals, such as protection against losses due volatilization and degradation of the active ingredient, as well as the augment of water dispersion, allowing for their application on crops without requiring the use of organic solvents that could harm the user and the environment. This characteristics could enhance the productivity, reducing both costs and environmental pollution. In this work the propiconazole fungicide, forming part of a commercial formulation as well as in its pure state, was encapsulated using as carriers the biodegradable polymer poly lactic acid (PLA) and the biodegradable co-polymer poly (lactic-co-glicolic) acid, all with the aim of generate controlled fungicide release systems to augment the efficiency of the treatments of the Fusarium dieback disease. The most efficient system obtained presented nanospheres of 146.28 nm and an encapsulation efficiency over 42%. The antifungal activity tests showed that the use of this nanoencapsulated fungicide system enhances the growth inhibition percentage in 5%, obtaining a formulation that presents good dispersion in water without the need of organic emulsifier agents.
- Published
- 2019
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