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Effects of riboflavin and fatty acid methyl esters on cholesterol oxidation during illumination

机译:核黄素和脂肪酸甲酯对光照过程中胆固醇氧化的影响

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The effect of riboflavin or fatty acid methyl esters on cholesterol photooxidation was studied. Samples containing cholesterol, either alone or in combination with riboflavin or fatty acid methyl esters, were illuminated at 25 degreesC in an incubator for 28 days. The various cholesterol oxidation products (COPs) and cholesterol were analyzed by gas chromatography-mass spectrometry (GC-MS), and riboflavin was determined by HPLC. Results showed that the presence of riboflavin or fatty acid methyl esters facilitated production of COPs and degradation of cholesterol, and the degradation fits a first-order model. The COPs formed during light storage included 7alpha-OH, 7beta-OH, 7-keto, 3,5-cholestadien-7-one, 5,6alpha-EP, and 5,6beta-EP. The addition of riboflavin caused formation of 3,5-cholestadien-7-one through dehydration of 7-keto, whereas in the presence of docosahexaenoic acid methyl ester, the formation of 5,6alpha-EP or 5,6beta-EP was favored. Riboflavin was more effective for generation of COPs than fatty acid methyl esters. [References: 24]
机译:研究了核黄素或脂肪酸甲酯对胆固醇光氧化的影响。将含有胆固醇的样品(单独或与核黄素或脂肪酸甲酯结合使用)在培养箱中于25摄氏度下照明28天。通过气相色谱-质谱法(GC-MS)分析各种胆固醇氧化产物(COPs)和胆固醇,并通过HPLC测定核黄素。结果表明,核黄素或脂肪酸甲酯的存在促进了COP的产生和胆固醇的降解,并且该降解符合一阶模型。在光存储期间形成的COP包括7α-OH,7β-OH,7-酮,3,5-胆甾二烯-7-,5,6α-EP和5,6β-EP。核黄素的添加通过7-酮的脱水导致3,5-cholestadien-7-one的形成,而在二十二碳六烯酸甲酯存在的情况下,5,6alpha-EP或5,6beta-EP的形成是有利的。核黄素在生成COP方面比脂肪酸甲酯更有效。 [参考:24]

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