The aim of this study was to evaluate the in vitro phototoxic potential of synthetic asymmetric and glycosylated curcuminoids on planktonic model bacteria by counting the colony forming units. The Gram-positive Enterococcus faecalis and the Gram-negative Escherichia coli were exposed to aqueous solutions of the curcuminoids (≤ 2.5 μM) in the presence or absence of selected pharmaceutical excipients (Pluronic® F127, PEG 400 and HPγCD) in combination with a low irradiation dose (5 J/cm2). All the asymmetric curcuminoids, but only one of the glycosylated curcuminoids demonstrated substantial phototoxic effect on Enterococcus faecalis (≥ 4.7 log reduction). Only two of the asymmetric curcuminoids showed a moderate to low phototoxic effect on the more persistent Escherichia coli. This study emphasized that aromatic hydroxyl substituents in the para-position are important to maintain the phototoxic potential of curcuminoids independent of molecular symmetry. Glycosylation of the aromatic substituents resulted in a substantial loss in phototoxicity towards planktonic bacteria, an apparent change in the non-radiative S1-decay process and a weaker interaction with Pluronic® F127 compared to the non-glycosylated curcuminoids. The selected excipients Pluronic® F127, PEG 400 and HPγCD strongly influenced the phototoxic potential of the unsymmetrical, non-glycosylated compounds.

Antibacterial phototoxic effects of synthetic asymmetric and glycosylated curcuminoids in aqueous formulations Studies on curcumin and curcuminoids. LIV / Marianne Lilletvedt, Tovsen; Ellen, Bruzell; Ferrari, Erika; Saladini, Monica; Vivek S., Gaware; Már, Másson; Solveig, Kristensen; Hanne Hjorth, Tønnesen. - In: JOURNAL OF PHOTOCHEMISTRY AND PHOTOBIOLOGY B-BIOLOGY. - ISSN 1011-1344. - STAMPA. - 140:(2014), pp. 150-156. [10.1016/j.jphotobiol.2014.07.013]

Antibacterial phototoxic effects of synthetic asymmetric and glycosylated curcuminoids in aqueous formulations Studies on curcumin and curcuminoids. LIV

FERRARI, Erika;SALADINI, Monica;
2014

Abstract

The aim of this study was to evaluate the in vitro phototoxic potential of synthetic asymmetric and glycosylated curcuminoids on planktonic model bacteria by counting the colony forming units. The Gram-positive Enterococcus faecalis and the Gram-negative Escherichia coli were exposed to aqueous solutions of the curcuminoids (≤ 2.5 μM) in the presence or absence of selected pharmaceutical excipients (Pluronic® F127, PEG 400 and HPγCD) in combination with a low irradiation dose (5 J/cm2). All the asymmetric curcuminoids, but only one of the glycosylated curcuminoids demonstrated substantial phototoxic effect on Enterococcus faecalis (≥ 4.7 log reduction). Only two of the asymmetric curcuminoids showed a moderate to low phototoxic effect on the more persistent Escherichia coli. This study emphasized that aromatic hydroxyl substituents in the para-position are important to maintain the phototoxic potential of curcuminoids independent of molecular symmetry. Glycosylation of the aromatic substituents resulted in a substantial loss in phototoxicity towards planktonic bacteria, an apparent change in the non-radiative S1-decay process and a weaker interaction with Pluronic® F127 compared to the non-glycosylated curcuminoids. The selected excipients Pluronic® F127, PEG 400 and HPγCD strongly influenced the phototoxic potential of the unsymmetrical, non-glycosylated compounds.
2014
140
150
156
Antibacterial phototoxic effects of synthetic asymmetric and glycosylated curcuminoids in aqueous formulations Studies on curcumin and curcuminoids. LIV / Marianne Lilletvedt, Tovsen; Ellen, Bruzell; Ferrari, Erika; Saladini, Monica; Vivek S., Gaware; Már, Másson; Solveig, Kristensen; Hanne Hjorth, Tønnesen. - In: JOURNAL OF PHOTOCHEMISTRY AND PHOTOBIOLOGY B-BIOLOGY. - ISSN 1011-1344. - STAMPA. - 140:(2014), pp. 150-156. [10.1016/j.jphotobiol.2014.07.013]
Marianne Lilletvedt, Tovsen; Ellen, Bruzell; Ferrari, Erika; Saladini, Monica; Vivek S., Gaware; Már, Másson; Solveig, Kristensen; Hanne Hjorth, Tønnesen
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11380/1034117
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