Stable Isotope Tracer to Reveal the Interconversion between 3‑Monochloro-1,2-propanediol Ester and Glycidyl Ester during the Deodorization Process

In this study, the effects of the deodorization process on the interconversion between 3-monochloro-1,2-propanediol ester (3-MCPDE) and glycidyl ester (GE) using 3-MCPDE or GE standards containing deuterium-labeled palmitic acid (*P), oleic acid (*O), or linoleic acid (*L) were examined. Deuterium-l...

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Veröffentlicht in:Journal of agricultural and food chemistry 2022-12, Vol.70 (50), p.15955-15961
Hauptverfasser: Yoshinaga, Kazuaki, Yamazaki, Kaori, Nagai, Toshiharu, Tanaka, Seiya, Gotoh, Naohiro
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Sprache:eng
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Zusammenfassung:In this study, the effects of the deodorization process on the interconversion between 3-monochloro-1,2-propanediol ester (3-MCPDE) and glycidyl ester (GE) using 3-MCPDE or GE standards containing deuterium-labeled palmitic acid (*P), oleic acid (*O), or linoleic acid (*L) were examined. Deuterium-labeled 3-MCPDE or GE was added to palm oil then deodorized at 250 °C for 20, 40, or 60 min. In the 3-MCPDE-spiked palm oil, the deuterium-labeled 3-MCPDE content decreased with deodorization time. Moreover, GE containing *P or *O was detected, but there was no GE containing *L in the 3-MCPDE-spiked palm oil. In the GE-spiked oil, GE containing *O or *L decreased with deodorization time, but the content of GE containing *P did not change over the time. Furthermore, deuterium-labeled 3-MCPDE was not detected in the GE-spiked oil. These results suggest that 3-MCPDE is converted into GE and that fatty acid species bound to 3-MCPDE or GE may affect their interconversion.
ISSN:0021-8561
1520-5118
DOI:10.1021/acs.jafc.2c06706