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烯胺酮作为模型伯胺潜在前药的水解机制及结构-稳定性关系

Mechanism of hydrolysis and structure-stability relationship of enaminones as potential prodrugs of model primary amines.

作者信息

Naringrekar V H, Stella V J

机构信息

Department of Pharmaceutical Chemistry, University of Kansas, Lawrence 66045.

出版信息

J Pharm Sci. 1990 Feb;79(2):138-46. doi: 10.1002/jps.2600790213.

Abstract

The objective of this work was to investigate the chemistry and the structure-stability relationship of enaminones (a class of enamines formed between a primary amine and a 1,3-dicarbonyl compound) and to evaluate their potential usefulness as prodrugs of primary amines. The acid-catalyzed degradation of the enaminones was found to be very sensitive to minor differences in the structure of the 1,3-dicarbonyl compound used to form the enaminone, but relatively insensitive to changes in the amine portion of the enaminones. A correlation was found between the rate of enaminone hydrolysis and the pKa of the 1,3-dicarbonyl compound, suggesting that the rate-controlling step in the hydrolysis of the enaminones was the proton addition to the vinyl carbon of the enaminone. Enaminones formed with cyclic 1,3-dicarbonyl compounds were significantly more stable than those formed with structurally similar acyclic compounds. Based on chemical stability considerations alone, enaminones do not appear to be good candidates as prodrugs of primary amines. Evidence is presented, however, that enaminones formed between amines and 1,3-ketoesters or lactones may be subject to enzyme-catalyzed degradation. Further research on the design of enaminones destabilized by a triggering enzymatic event that results in the loss of conjugation (e.g., ester or lactone hydrolysis or an oxidation/reduction event) may prove worth pursuing.

摘要

这项工作的目的是研究烯胺酮(一类由伯胺与1,3 - 二羰基化合物形成的烯胺)的化学性质及其结构 - 稳定性关系,并评估它们作为伯胺前药的潜在用途。结果发现,烯胺酮的酸催化降解对用于形成烯胺酮的1,3 - 二羰基化合物结构中的微小差异非常敏感,但对烯胺酮胺部分的变化相对不敏感。发现烯胺酮水解速率与1,3 - 二羰基化合物的pKa之间存在相关性,这表明烯胺酮水解的速率控制步骤是质子加成到烯胺酮的乙烯基碳上。由环状1,3 - 二羰基化合物形成的烯胺酮比由结构相似的非环状化合物形成的烯胺酮稳定得多。仅基于化学稳定性考虑,烯胺酮似乎不是伯胺前药的良好候选者。然而,有证据表明,胺与1,3 - 酮酯或内酯形成的烯胺酮可能会发生酶催化降解。对通过引发酶促事件(例如酯或内酯水解或氧化/还原事件)导致共轭丧失而不稳定的烯胺酮设计进行进一步研究可能值得探索。

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