Furosemide (FUR), an active pharmaceutical ingredient (API) belonging to a group of drugs known as loop diuretics, has widespread use, but, is characterized by a strong instability to light, which causes chemical transformations that could give a yellowing phenomenon and have a significant impact from a health and marketing point of view. Many studies have tried to explain this phenomenon under different experimental conditions, but no detailed explanation of the yellowing phenomenon has been provided. This work, unlike the others, provides an overall view and explanation of the behavior of FUR in relation to the yellowing phenomenon, both in the solution and in solid state, considering several aspects, such as light exposure, presence of oxygen, and moisture effects.

Giannetti, M., Canale, V.c., Micheli, L., Fiori, M., Mazzuca, C., Palleschi, A. (2023). An insight into the degradation processes of the anti-hypertensive drug furosemide. MOLECULES, 28(1) [10.3390/molecules28010381].

An insight into the degradation processes of the anti-hypertensive drug furosemide

Micheli, Laura;Mazzuca, Claudia
;
Palleschi, Antonio
2023-01-02

Abstract

Furosemide (FUR), an active pharmaceutical ingredient (API) belonging to a group of drugs known as loop diuretics, has widespread use, but, is characterized by a strong instability to light, which causes chemical transformations that could give a yellowing phenomenon and have a significant impact from a health and marketing point of view. Many studies have tried to explain this phenomenon under different experimental conditions, but no detailed explanation of the yellowing phenomenon has been provided. This work, unlike the others, provides an overall view and explanation of the behavior of FUR in relation to the yellowing phenomenon, both in the solution and in solid state, considering several aspects, such as light exposure, presence of oxygen, and moisture effects.
2-gen-2023
Pubblicato
Rilevanza internazionale
Articolo
Esperti anonimi
Settore CHIM/02 - CHIMICA FISICA
English
Con Impact Factor ISI
4-chloro-5-sulfamoylanthranilyc acid
Furosemide
aging
furfuryl alcohol
photo-chemistry
co-funding of the European Union FSE REACT-EU - PON Ricerca e Innovazione 2014-2020, DM 1062/2021
Giannetti, M., Canale, V.c., Micheli, L., Fiori, M., Mazzuca, C., Palleschi, A. (2023). An insight into the degradation processes of the anti-hypertensive drug furosemide. MOLECULES, 28(1) [10.3390/molecules28010381].
Giannetti, M; Canale, Vc; Micheli, L; Fiori, M; Mazzuca, C; Palleschi, A
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2108/312767
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