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Formation of (2E)-4-Hydroxy-2-nonenal and (2E)-4-Hydroxy-2-hexenal by Plant Enzymes: A Review Suggests a Role in the Physiology of Plants
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作者 Harold W. Gardner 《Advances in Enzyme Research》 CAS 2016年第2期56-61,共6页
It is demonstrated that (3Z)-nonenal (NON) and (3Z)-hexenal (HEX) are oxidized in a cascade by lipoxygenase (LOX) and hydroperoxide peroxygenase (HP peroxygenase) into (2E)-4-hydroxy-2- nonenal (HNE) and (2E)-4-hydrox... It is demonstrated that (3Z)-nonenal (NON) and (3Z)-hexenal (HEX) are oxidized in a cascade by lipoxygenase (LOX) and hydroperoxide peroxygenase (HP peroxygenase) into (2E)-4-hydroxy-2- nonenal (HNE) and (2E)-4-hydroxy-2-hexenal (HHE), respectively. In turn, HNE inactivates LOX terminating the cascade. The hydroxy-alkenals produced serve to inhibit plant pathogens, which initiated the cascade. In addition to LOX, other unknown oxygenases may be involved in the cascade. 展开更多
关键词 (3Z)-Nonenal (3Z)-hexenal (2e)-4-hydroxy-2-nonenal (2e)-4-hydroxy-2-hexenal (2e)-4-Hydroperoxy-2-hexenal LIPOXYGeNASe Hydroperoxide Peroxygenase Hydroperoxide Lyase (2e)-4-Hydroperoxy-2-Nonenal 3 4-epoxynonanal (2e)-4-Oxo-2-nonenal Glycine max Vica faba Plant Pathogen
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鱼糜中活泼羰基化合物在胶凝过程中的变化 被引量:2
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作者 付湘晋 刘颖 +2 位作者 李忠海 林亲录 Tyre C. Lanier 《食品工业科技》 CAS CSCD 北大核心 2017年第10期72-75,共4页
本文采用五氟苯肼原位衍生化-固相微萃取-气相/质谱法检测了鲢鱼鱼糜、冷冻鱼糜及鱼糜凝胶中的三种活泼羰基化合物(RCCs):丙二醛(MDA)、4-羟基-己烯醛(HHE)、4-羟基-壬烯醛(HNE);并采用添加五氟苯肼清除RCCs,阻断RCCs-蛋白质反应,分析... 本文采用五氟苯肼原位衍生化-固相微萃取-气相/质谱法检测了鲢鱼鱼糜、冷冻鱼糜及鱼糜凝胶中的三种活泼羰基化合物(RCCs):丙二醛(MDA)、4-羟基-己烯醛(HHE)、4-羟基-壬烯醛(HNE);并采用添加五氟苯肼清除RCCs,阻断RCCs-蛋白质反应,分析鱼糜中RCCs对鱼糜蛋白胶凝特性的影响。结果表明:新鲜鲢鱼糜中MDA(0.42±0.02)mg/kg、HHE(0.21±0.03)mg/kg含量高于HNE(0.07±0.00)mg/kg;冷冻鱼糜RCCs含量高于新鲜鱼糜,MDA、HHE、HNE含量分别为(1.14±0.03)、(0.86±0.03)、(0.18±0.02)mg/kg。新鲜鱼糜加热胶凝后,各RCC含量均显著上升(p<0.05),冷冻鱼糜加热胶凝后,各RCC含量均显著(p<0.05)下降;添加RCCs清除剂阻断RCCs-蛋白质反应后,冷冻鱼糜凝胶(40℃1 h-90℃30 min)强度从(243.52±25.04)g×cm下降到(190.53±20.33)g×cm(p<0.05);所以,RCCs加强了冷冻鱼糜凝胶的强度。RCCs对鱼糜凝胶的保水性无明显影响。 展开更多
关键词 鱼糜 凝胶 活泼羰基化合物 丙二醛 4-羟基-己烯醛 4-羟基-壬烯醛
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Determination of trans-4-hydroxy-2-alkenals in thermally treated soybean oil by SPE-HPLC 被引量:1
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作者 Hongying Hua Shimin Wu Xin Ma 《Grain & Oil Science and Technology》 2022年第3期107-113,共7页
Trans-4-hydroxy-2-hexenal(4-HHE) and trans-4-hydroxy-2-nonenal(4-HNE) are secondary lipid peroxidation products in edible oils, which are cytotoxic and genotoxic. They could covalently bind with protein, phospholipids... Trans-4-hydroxy-2-hexenal(4-HHE) and trans-4-hydroxy-2-nonenal(4-HNE) are secondary lipid peroxidation products in edible oils, which are cytotoxic and genotoxic. They could covalently bind with protein, phospholipids and DNA, further disrupting the normal function of liver, lung and brain.Derivation process was generally conducted during pretreatment before detection and quantification of 4-HHE and 4-HNE. However, the derivation procedures were time consuming and chemical degradation may occur during the process. Hence, this paper aims to establish a simple solid phase extractionhigh performance liquid chromatography(SPE-HPLC) method to determine the 4-HHE and 4-HNE contents in thermally treated soybean oil. C18 solid phase extraction was applied in the pretreatment process. Firstly, the reliability of the method was evaluated. Good linearity was observed in the range of 0.1–0.5 μg/m L and 0.5–10 μg/m L for 4-HHE and 4-HNE. The limit of detection(LOD) of 4-HHE and 4-HNE were 0.0486 and 0.0129 μg/m L, respectively. And the limit of quantitation(LOQ) of4-HHE and 4-HNE were 0.1458 and 0.0431 μg/m L, respectively. Recovery rate were in the range of89.11%–91.58% and 71.83%–79.40% for 4-HHE and 4-HNE, respectively. The method achieved the extraction, purification and detection of 4-HHE and 4-HNE simultaneously and had the advantages of simple operation, effectiveness, high precision, good repeatability. Then, the method was applied to monitor the concentrations of 4-HHE and 4-HNE in soybean oil heated at 180 °C for 40 h. The contents of 4-HHE and 4-HNE were 0–0.32 μg/g and 0–6.97 μg/g, respectively, which provided guidance for evaluating health risks of thermally treated soybean oil during heating. 展开更多
关键词 Trans-4-hydroxy-2-hexenal Trans-4-hydroxy-2-nonenal Soybean oil
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Asymmetric Syntheses of Osmundalactones and 5-Hydroxy-2-hexen-4-olides from 4-Benzyloxy-5-hydroxy-2(E)-hexenoate
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作者 Xi Ying ZHAO Machiko ONO +1 位作者 Hiroyuki AKITA Yu Ming CHI 《Chinese Chemical Letters》 SCIE CAS CSCD 2006年第6期727-729,共3页
(+)-(4S,5R)-and (-)-(4R,5S)-osmundalactones as well as (+)-(4R,5S)- and (-)-(4S,5R)- 5-hydroxy-2-hexen-4-olides were synthesized by a concise and efficient synthesis method starting from 4-benzyloxy-... (+)-(4S,5R)-and (-)-(4R,5S)-osmundalactones as well as (+)-(4R,5S)- and (-)-(4S,5R)- 5-hydroxy-2-hexen-4-olides were synthesized by a concise and efficient synthesis method starting from 4-benzyloxy-5-hydroxy-2(E)-hexenoate in good yield with over 99% e.e.. 展开更多
关键词 Osmundalactone 5-hydroxy-2-hexen-4-olide 4-benzyloxy-5-hydroxy-2e)-hexenoate.
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