IMIBIO-SL   20937
INSTITUTO MULTIDISCIPLINARIO DE INVESTIGACIONES BIOLOGICAS DE SAN LUIS
Unidad Ejecutora - UE
artículos
Título:
Cyclodextrine-nanoencapsulation of niclosamide: Water solubility and meaningful enhancement of visible-light—Mediated sensitized photodegradation of the drug
Autor/es:
GATICA, EDUARDO; GAMBETTA, CAROLINA; GARCÍA, NORMAN A.; PAJARES, ADRIANA; MASSAD, WALTER A.; PAJARES, ADRIANA; MASSAD, WALTER A.; NATERA, JOSÉ; SANCHO, MATÍAS I.; NATERA, JOSÉ; SANCHO, MATÍAS I.; GATICA, EDUARDO; GAMBETTA, CAROLINA; GARCÍA, NORMAN A.
Revista:
JOURNAL OF PHOTOCHEMISTRY AND PHOTOBIOLOGY A-CHEMISTRY
Editorial:
ELSEVIER SCIENCE SA
Referencias:
Año: 2017 vol. 348 p. 295 - 304
ISSN:
1010-6030
Resumen:
A kinetic and mechanistic study of the daylight-mediated photooxidation of the multifunctional drugNiclosamide (NSD) was carried out in aqueous solutions. NSD is a frequent contaminant suspended innatural waters. The aqueous dissolution of the practically insoluble NSD was driven by the presence of2-hydrxypropyl-b-cyclodextrin (HPbCD). The already proposed formation of an inclusion complexbetween NSD-HPbCD was confirmed through theoretical studies. NSD-nanoencapsulation within theoligosaccharide occurs with a 1:2 stoichiometry, being the drug embedded into a cavity of two HPbCDmolecules, in a so called head-to-head orientation.The Reactive Oxygen Species singlet molecular oxygen, superoxide radical anion and hydrogenperoxide, generated through the visible-light absorber sensitizers Riboflavin and Rose Bengal, areeffectively intercepted by the encapsulated biocide and contribute to its photodegradation. The overallNSD photooxidation rate, determined through oxygen consumption indicates that the process isrelatively highly efficient in the microheterogeneous aqueous media as compared to NSD in MeOHsolution, and to phenol (PHE) in pure water. The paradigmatic water-contaminant PHE was taken a asreference in order to evaluate the persistence of the NSD under photosensitized irradiation in aqueousmedium. The photooxidation mechanism of NSD is affected by cyclodextrin complexation, due todynamic limitations, electrostatic interactions and pH changes upon NSD dissolution in aqueous HPbCD.In this sense, the NSD-HPbCD complex can be seen as a sort of nanoreactor that enables thephotodegradation of the biocide in water, under daylight conditions.