The influence of the unsaturation degree of different triacylglycerols (tristearin, triolein, trilinolein and trilinolenin) on cholesterol oxidation at 180 ºC, was evaluated. Cholesterol degraded faster when heated alone than in presence of triacylglycerols; moreover, the more unsaturated the matrix, the slower the degradation of cholesterol. Both cholesterol and triacylglycerols degradation fit a first order kinetic model (R2>0.9), except for the tristearin sample. Cholesterol oxidation products (COPs) and peroxides were formed during the heating treatment. The presence of any type of lipid matrix postponed and decreased the maximum concentration of both oxidation parameters. Maximum total COPs concentrations were achieved at 20 min in neat cholesterol, 120 min in tristearin and triolein and 180 min in polyunsaturated matrix samples. 7-ketocholesterol was the main COP in most cases during the whole heating treatment. Both the presence of triacylglycerols and their unsaturation degree inhibited cholesterol thermooxidation at 180 ºC.

Thermo-oxidation of cholesterol: effect of the unsaturation degree of the lipid matrix

V. Cardenia;
2013-01-01

Abstract

The influence of the unsaturation degree of different triacylglycerols (tristearin, triolein, trilinolein and trilinolenin) on cholesterol oxidation at 180 ºC, was evaluated. Cholesterol degraded faster when heated alone than in presence of triacylglycerols; moreover, the more unsaturated the matrix, the slower the degradation of cholesterol. Both cholesterol and triacylglycerols degradation fit a first order kinetic model (R2>0.9), except for the tristearin sample. Cholesterol oxidation products (COPs) and peroxides were formed during the heating treatment. The presence of any type of lipid matrix postponed and decreased the maximum concentration of both oxidation parameters. Maximum total COPs concentrations were achieved at 20 min in neat cholesterol, 120 min in tristearin and triolein and 180 min in polyunsaturated matrix samples. 7-ketocholesterol was the main COP in most cases during the whole heating treatment. Both the presence of triacylglycerols and their unsaturation degree inhibited cholesterol thermooxidation at 180 ºC.
2013
141
3
2757
2764
THERMOXIDATION; CHOLESTEROL; TRIACYLGLYCEROLS; UNSATURATION DEGREE; PEROXIDES
D. Ansorena; B. Barriuso; V. Cardenia; I. Astiasarán; G. Lercker; M.T. Rodriguez-Estrada
File in questo prodotto:
File Dimensione Formato  
Food Chem 2013.pdf

Accesso riservato

Tipo di file: PDF EDITORIALE
Dimensione 474.7 kB
Formato Adobe PDF
474.7 kB Adobe PDF   Visualizza/Apri   Richiedi una copia
Deroga.pdf

Accesso riservato

Descrizione: deroga
Tipo di file: DEROGA (OBBLIGATORIO ALLEGARE FILE CON MOTIVAZIONE)
Dimensione 20.8 kB
Formato Adobe PDF
20.8 kB Adobe PDF   Visualizza/Apri   Richiedi una copia

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/2318/1689344
Citazioni
  • ???jsp.display-item.citation.pmc??? 7
  • Scopus 49
  • ???jsp.display-item.citation.isi??? 44
social impact