Photosensitized E/Z Isomerization of (all‑E)‑Lycopene Aiming at Practical Applications

Photoisomerization of (all-E)-lycopene to the corresponding Z-isomers was investigated under visible to middle-infrared light irradiation in the presence of several sensitizers, including edible ones. Highly purified (all-E)-lycopene from tomato paste was isomerized to Z-isomers to the extent of 46....

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Veröffentlicht in:Journal of agricultural and food chemistry 2014-11, Vol.62 (47), p.11353-11356
Hauptverfasser: Honda, Masaki, Igami, Haruyuki, Kawana, Takahiro, Hayashi, Kento, Takehara, Munenori, Inoue, Yoshinori, Kitamura, Chitoshi
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Sprache:eng
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Zusammenfassung:Photoisomerization of (all-E)-lycopene to the corresponding Z-isomers was investigated under visible to middle-infrared light irradiation in the presence of several sensitizers, including edible ones. Highly purified (all-E)-lycopene from tomato paste was isomerized to Z-isomers to the extent of 46.4–57.4% after irradiation with the sensitizers for 60 min in acetone, in which a thermodynamically stable isomer of (5Z)-lycopene was predominantly generated, whereas kinetically preferable (9Z)- and (13Z)-lycopenes were dominant without sensitizer. Examination of the time course of photoisomerization demonstrated that the highest isomerization efficiency (80.4%) was attained using erythrosine as the sensitizer under 480–600 nm light irradiation in hexane for 60 min, a protocol that successfully suppressed the degradation of lycopene. (5Z)-Lycopene, reported as a more bioavailable isomer, was again predominantly produced with erythrosine and rose bengal in each solvent.
ISSN:0021-8561
1520-5118
DOI:10.1021/jf504502t