首页> 外文OA文献 >Oxidative versus Non-oxidative Decarboxylation of Amino Acids: Conditions for the Preferential Formation of Either Strecker Aldehydes or Amines in Amino Acid/Lipid-Derived Reactive Carbonyl Model Systems
【2h】

Oxidative versus Non-oxidative Decarboxylation of Amino Acids: Conditions for the Preferential Formation of Either Strecker Aldehydes or Amines in Amino Acid/Lipid-Derived Reactive Carbonyl Model Systems

机译:氨基酸的氧化与非氧化脱羧:氨基酸/脂质衍生的活性羰基模型系统中斯特雷克醛或胺优先形成的条件

摘要

© 2015 American Chemical Society. Comparative formation of both 2-phenylethylamine and phenylacetaldehyde as a consequence of phenylalanine degradation by carbonyl compounds was studied in an attempt to understand if the amine/aldehyde ratio can be changed as a function of reaction conditions. The assayed carbonyl compounds were selected because of the presence in the chain of both electron-donating and electron-withdrawing groups and included alkenals, alkadienals, epoxyalkenals, oxoalkenals, and hydroxyalkenals as well as lipid hydroperoxides. The obtained results showed that the 2-phenylethylamine/phenylacetaldehyde ratio depended upon both the carbonyls and the reaction conditions. Thus, it can be increased using electron-donating groups in the chain of the carbonyl compound, small amounts of carbonyl compound, low oxygen content, increasing the pH, or increasing the temperature at pH 6. Opposed conditions (use of electron-withdrawing groups in the chain of the carbonyl compound, large amounts of carbonyl compound, high oxygen contents, low pH values, and increasing temperatures at low pH values) would decrease the 2-phenylethylamine/phenylacetaldehyde ratio, and the formation of aldehydes over amines in amino acid degradations would be favored.
机译:©2015美国化学学会。研究了由于羰基化合物降解苯丙氨酸而导致的2-苯乙胺和苯乙醛的比较形成,试图了解胺/醛的比例是否可以根据反应条件而改变。选择被分析的羰基化合物是因为在供电子基团和吸电子基团的链中都存在,包括链烯基,链二烯基,环氧链烯基,氧链烯基和羟基链烯基以及脂质氢过氧化物。所得结果表明2-苯乙胺/苯乙醛的比例取决于羰基和反应条件。因此,可以通过使用羰基化合物链中的供电子基团,少量羰基化合物,低氧含量,提高pH值或提高pH值为6的温度来增加它。相对条件(使用吸电子基团)在羰基化合物的链中,大量的羰基化合物,高氧含量,低pH值以及在低pH值下升高温度将降低2-苯基乙胺/苯基乙醛的比例,并在氨基酸中形成比胺更高的醛退化将是有利的。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号