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1.
Molecules ; 28(10)2023 May 18.
Article in English | MEDLINE | ID: mdl-37241897

ABSTRACT

The large-scale use of alcohol (OH)-based disinfectants to control pathogenic viruses is of great concern because of their side effects on humans and harmful impact on the environment. There is an urgent need to develop safe and environmentally friendly disinfectants. Essential oils (EOs) are generally recognized as safe (GRAS) by the FDA, and many exhibit strong antiviral efficacy against pathogenic human enveloped viruses. The present study investigated the virucidal disinfectant activity of solutions containing EO and OH against DENV-2 and CHIKV, which were used as surrogate viruses for human pathogenic enveloped viruses. The quantitative suspension test was used. A solution containing 12% EO + 10% OH reduced > 4.0 log10 TCID50 (100% reduction) of both viruses within 1 min of exposure. In addition, solutions containing 12% EO and 3% EO without OH reduced > 4.0 log10 TCID50 of both viruses after 10 min and 30 min of exposure, respectively. The binding affinities of 42 EO compounds and viral envelope proteins were investigated through docking analyses. Sesquiterpene showed the highest binding affinities (from -6.7 to -8.0 kcal/mol) with DENV-2 E and CHIKV E1-E2-E3 proteins. The data provide a first step toward defining the potential of EOs as disinfectants.


Subject(s)
Disinfectants , Oils, Volatile , Viruses , Humans , Oils, Volatile/pharmacology , Disinfectants/pharmacology , Disinfectants/chemistry , Antiviral Agents/pharmacology , Ethanol
2.
In. Castillo Pino, Edgardo A. Tratado de perineología: disfunciones del piso pélvico. Montevideo, Academia Nacional de Medicina, 2019. p.449-459.
Monography in Spanish | LILACS, UY-BNMED, BNUY | ID: biblio-1348418
3.
J Microencapsul ; 31(5): 488-500, 2014.
Article in English | MEDLINE | ID: mdl-24697185

ABSTRACT

Astaxanthin (AST) is a valued molecule because of its high antioxidant properties. However, AST is extremely sensitive to oxidation, causing the loss of its bioactive properties. The purposes of this study were to define conditions for microencapsulating AST in oil bodies (OB) from Brassica napus to enhance its oxidative stability, and to test the bioactivity of the microencapsulated AST (AST-M) in cells. Conditions for maximising microencapsulation efficiency (ME) were determined using the Response Surface Methodology, obtaining a high ME (>99%). OB loaded with AST showed a strong electrostatic repulsion in a wide range of pH and ionic strengths. It was found that AST-M exposed to air and light was more stable than free AST. In addition, the protective effect of AST against intracellular ROS production was positively influenced by microencapsulation in OB. These results suggest that OB offer a novel option for stabilising and delivering AST.


Subject(s)
Antioxidants/administration & dosage , Brassica napus/chemistry , Drug Carriers/chemistry , Lipid Droplets/chemistry , Antioxidants/pharmacology , Cell Line , Drug Compounding , Humans , Reactive Oxygen Species/metabolism , Xanthophylls/administration & dosage , Xanthophylls/pharmacology
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