Quercetin-3-O-acyl esters (I–VI) were synthesized and their usefulness as quercetin topical prodrugs was evaluated. Quercetin esters wereassayed to determine their water stability and solubility, their susceptibility to undergoing enzymatic hydrolysis and their permeation throughexcised human skin. Quercetin ethyl (I) and hexyl (IV) esters proved poorly stable in aqueous media and they were not assayed further. Amongthe derivatives tested, quercetin propyl (II) and butyl (III) esters were more water-soluble than the parent drug. Esters II, III and V were readilyhydrolyzed by human plasma and esters II and III penetrated excised human skin better than quercetin from aqueous saturated solutions. On thebasis of the results obtained, esters II and III could be regarded as promising quercetin topical prodrugs.© 2006 Elsevier B.V. All rights reserved.

Quercetin-3-O-acyl esters (I-VI) were synthesized and their usefulness as quercetin topical prodrugs was evaluated. Quercetin esters were assayed to determine their water stability and solubility, their susceptibility to undergoing enzymatic hydrolysis and their permeation through excised human skin. Quercetin ethyl (I) and hexyl (IV) esters proved poorly stable in aqueous media and they were not assayed further. Among the derivatives tested, quercetin propyl (II) and butyl (III) esters were more water soluble than the parent drug. Esters II, II and V were readily hydrolyzed by human plasma and esters II and III penetrated excised human skin better than quercetin from aqueous saturated solutions. On the basis of the results obtained esters II and II could be regarded as promising quercetin topical prodrugs.

In vitro evaluation of quercetin 3-O-acyl esters as topical prodrugs

MONTENEGRO, LUCIA;CARBONE, CLAUDIA;PUGLISI, Giovanni
2007-01-01

Abstract

Quercetin-3-O-acyl esters (I–VI) were synthesized and their usefulness as quercetin topical prodrugs was evaluated. Quercetin esters wereassayed to determine their water stability and solubility, their susceptibility to undergoing enzymatic hydrolysis and their permeation throughexcised human skin. Quercetin ethyl (I) and hexyl (IV) esters proved poorly stable in aqueous media and they were not assayed further. Amongthe derivatives tested, quercetin propyl (II) and butyl (III) esters were more water-soluble than the parent drug. Esters II, III and V were readilyhydrolyzed by human plasma and esters II and III penetrated excised human skin better than quercetin from aqueous saturated solutions. On thebasis of the results obtained, esters II and III could be regarded as promising quercetin topical prodrugs.© 2006 Elsevier B.V. All rights reserved.
2007
Quercetin-3-O-acyl esters (I-VI) were synthesized and their usefulness as quercetin topical prodrugs was evaluated. Quercetin esters were assayed to determine their water stability and solubility, their susceptibility to undergoing enzymatic hydrolysis and their permeation through excised human skin. Quercetin ethyl (I) and hexyl (IV) esters proved poorly stable in aqueous media and they were not assayed further. Among the derivatives tested, quercetin propyl (II) and butyl (III) esters were more water soluble than the parent drug. Esters II, II and V were readily hydrolyzed by human plasma and esters II and III penetrated excised human skin better than quercetin from aqueous saturated solutions. On the basis of the results obtained esters II and II could be regarded as promising quercetin topical prodrugs.
Quercetin esters; topical prodrugs; in vitro skin permeation
File in questo prodotto:
File Dimensione Formato  
IJP9316.pdf

solo gestori archivio

Licenza: Non specificato
Dimensione 364.8 kB
Formato Adobe PDF
364.8 kB Adobe PDF   Visualizza/Apri

I documenti in IRIS sono protetti da copyright e tutti i diritti sono riservati, salvo diversa indicazione.

Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.11769/36666
Citazioni
  • ???jsp.display-item.citation.pmc??? ND
  • Scopus 67
  • ???jsp.display-item.citation.isi??? 61
social impact