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作为羧酸类药物生物可裂解前药的甘醇酰胺酯:合成、稳定性、生物转化及物理化学性质

Glycolamide esters as biolabile prodrugs of carboxylic acid agents: synthesis, stability, bioconversion, and physicochemical properties.

作者信息

Nielsen N M, Bundgaard H

机构信息

Royal Danish School of Pharmacy, Department of Pharmaceutical Chemistry AD, Copenhagen, Denmark.

出版信息

J Pharm Sci. 1988 Apr;77(4):285-98. doi: 10.1002/jps.2600770402.

Abstract

Benzoic acid esters of various substituted 2-hydroxyacetamides (glycolamides) were found to be hydrolyzed extremely rapidly in human plasma solutions, the half-lives of hydrolysis being less than 5 s in 50% plasma solutions for some N,N-disubstituted glycolamide esters. The rapid rate of hydrolysis could be largely attributed to cholinesterase (also called pseudocholinesterase) present in plasma. From a study of a variety of substituted glycolamide esters and structurally related esters, the most prominent structural requirement needed for a rapid rate of hydrolysis was found to be the glycolamide ester structure combined with the presence of two substituents on the amide nitrogen atom. A structural similarity of such esters with benzoylcholine, a good substrate for cholinesterase, was put forward. Esters of N,N-disubstituted glycolamides are suggested to be a useful biolabile prodrug type for several carboxylic acid agents. The esters combine a high susceptibility to undergo enzymatic hydrolysis in plasma with a high stability in aqueous solution. Furthermore, as demonstrated with the benzoic acid model esters, it is feasible to obtain ester derivatives with almost any desired water solubility or lipophilicity with retainment of marked lability to enzymatic hydrolysis.

摘要

研究发现,各种取代的2-羟基乙酰胺(乙醇酰胺)的苯甲酸酯在人血浆溶液中极易水解,对于某些N,N-二取代乙醇酰胺酯而言,在50%血浆溶液中的水解半衰期不到5秒。水解速度快很大程度上归因于血浆中存在的胆碱酯酶(也称为假性胆碱酯酶)。通过对各种取代的乙醇酰胺酯和结构相关酯的研究发现,快速水解所需的最突出结构要求是乙醇酰胺酯结构以及酰胺氮原子上存在两个取代基。有人提出此类酯与胆碱酯酶的良好底物苯甲酰胆碱在结构上具有相似性。N,N-二取代乙醇酰胺酯被认为是几种羧酸类药物有用的生物可降解前药类型。这些酯兼具在血浆中易发生酶水解和在水溶液中稳定性高的特点。此外,正如苯甲酸模型酯所表明的那样,获得几乎具有任何所需水溶性或亲脂性且对酶水解保持显著不稳定性的酯衍生物是可行的。

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