Chiou A, Verger R, Kokotos G
Department of Chemistry, University of Athens, Greece.
Lipids. 2001 May;36(5):535-42. doi: 10.1007/s11745-001-0754-0.
Synthetic routes to primary and N-alkyl alpha-keto amides are presented in this paper. Primary alpha-keto amides may be prepared by using an aldehyde as starting material. Commercially available alpha-keto acids may be coupled in high yield with primary amines by the mixed carbonic anhydride method affording N-alkyl alpha-keto amides. Alternatively, N-alkyl alpha-keto amides may be prepared by coupling long-chain alpha-hydroxy acids with amino components, followed by oxidation with pyridinium dichromate or NaOCl in the presence of 4-acetamido-2,2,6,6-tetramethyl-1-piperidinyloxy free radical. The alpha-keto amide derivatives prepared according to these procedures were tested for their ability to form stable monomolecular films at the air/water interface. The inhibition of porcine pancreatic lipase by the alpha-keto amides, spread as mixed films with 1,2-dicaprin, was studied with the monolayer technique. Among the compounds tested in this study, methyl 2-[(2-ketododecanoyl)amino]hexadecanoate was shown to be the most potent inhibitor, causing a 50% decrease in lipase activity at a 0.09 molar fraction.
本文介绍了制备伯α-酮酰胺和N-烷基α-酮酰胺的合成路线。伯α-酮酰胺可以通过使用醛作为起始原料来制备。市售的α-酮酸可通过混合碳酸酐法与伯胺高产率偶联,得到N-烷基α-酮酰胺。另外,N-烷基α-酮酰胺可以通过将长链α-羟基酸与氨基组分偶联,然后在4-乙酰氨基-2,2,6,6-四甲基-1-哌啶氧基自由基存在下用重铬酸吡啶鎓或次氯酸钠氧化来制备。根据这些方法制备的α-酮酰胺衍生物被测试了它们在空气/水界面形成稳定单分子膜的能力。使用单分子层技术研究了α-酮酰胺与1,2-二癸酸作为混合膜铺展时对猪胰脂肪酶的抑制作用。在本研究中测试的化合物中,2-[(2-酮十二烷酰基)氨基]十六烷酸甲酯被证明是最有效的抑制剂,在摩尔分数为0.09时导致脂肪酶活性降低50%。