Tokyo Innovation Center, Nissui Corporation.
Faculty of Science & Technology, Meijo University.
J Oleo Sci. 2024 Aug 1;73(8):1083-1090. doi: 10.5650/jos.ess24046. Epub 2024 Jul 17.
Growing evidence indicates that the intake of trans fatty acids (TFAs) increases the risk of numerous diseases, such as cardiovascular diseases. Recently, our group found that certain natural sulfur compounds (allyl isothiocyanate [AITC] and diallyl disulfide [DADS]) promote cis to trans isomerization of fatty acid esters during heat treatment. However, little information is available on the fatty acid isomerization with them. In this study, we investigated the effects of oxygen and α-tocopherol (antioxidant) on isomerization of oleic acid (18:1) methyl ester (OA-ME) in the presence of AITC and DADS. Furthermore, the effect of the simultaneous use of AITC and DADS was evaluated. Our results indicate that oxygen enhances the AITC-induced trans isomerization, and DADS was found to promote trans isomerization but inhibit AITC-induced trans isomerization during heating. Both AITC- and DADS-induced trans isomerization were inhibited by α-tocopherol. These results indicate that the trans isomerization of fatty acids induced by sulfur compounds can be controlled by devising a cooking process and the food ingredients used together.
越来越多的证据表明,反式脂肪酸(TFAs)的摄入会增加多种疾病的风险,如心血管疾病。最近,我们小组发现某些天然硫化合物(丙烯基异硫氰酸酯[AITC]和二烯丙基二硫化物[DADS])在热处理过程中促进脂肪酸酯的顺式到反式异构化。然而,关于它们的脂肪酸异构化的信息很少。在这项研究中,我们研究了氧气和α-生育酚(抗氧化剂)对 AITC 和 DADS 存在下油酸甲酯(OA-ME)异构化的影响。此外,还评估了同时使用 AITC 和 DADS 的效果。我们的结果表明,氧气增强了 AITC 诱导的反式异构化,而 DADS 被发现可促进反式异构化,但在加热时会抑制 AITC 诱导的反式异构化。α-生育酚抑制了 AITC 和 DADS 诱导的反式异构化。这些结果表明,通过设计烹饪过程和一起使用的食物成分,可以控制硫化合物诱导的脂肪酸反式异构化。