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N-棕榈酰乙醇胺中乙醇胺头部的修饰:干扰花生四烯酸乙醇胺代谢的新型药物的合成与评价

Modifications of the ethanolamine head in N-palmitoylethanolamine: synthesis and evaluation of new agents interfering with the metabolism of anandamide.

作者信息

Vandevoorde Séverine, Jonsson Kent-Olov, Fowler Christopher J, Lambert Didier M

机构信息

Unité de Chimie Pharmaceutique et de Radiopharmacie, Université Catholique de Louvain, Avenue Mounier, 73, UCL-CMFA 73.40, B-1200 Brussels, Belgium.

出版信息

J Med Chem. 2003 Apr 10;46(8):1440-8. doi: 10.1021/jm0209679.

Abstract

The endogenous fatty acid amide anandamide (AEA) has, as a result of its actions on cannabinoid and vanilloid receptors, a number of important pharmacological properties including effects on nociception, memory processes, spasticity, and cell proliferation. Inhibition of the metabolism of AEA, catalyzed by fatty acid amide hydrolase (FAAH), potentiates the actions of AEA in vivo and therefore may be a useful target for drug development. In the present study, we have investigated whether substitution of the headgroup of the endogenous alternative FAAH substrate palmitoylethanolamide (PEA) can result in the identification of novel compounds preventing AEA metabolism. Thirty-seven derivatives of PEA were synthesized, with the C16 long chain of palmitic acid kept intact, and comprising 20 alkylated, 12 aromatic, and 4 halogenated amides. The ability of the PEA derivatives to inhibit FAAH-catalyzed hydrolysis of [(3)H]AEA was investigated using rat brain homogenates as a source of FAAH. Inhibition curves were analyzed to determine the potency of the inhibitable fraction (pI(50) values) and the maximal attained inhibition for the compound, given that solubility in an aqueous environment is a major issue for these compounds. In the alkylamide family, palmitoylethylamide and palmitoylallylamide were inhibitors of AEA metabolism with pI(50) values of 5.45 and 5.47, respectively. Halogenated derivatives (Cl and Br) exhibit pI(50) values of approximately 5.5 but rather low percentages of maximal inhibition. The -OH group of the ethyl head chain of N-palmitoylethanolamine was not necessary for interaction with FAAH. Amides containing aromatic moieties were less potent inhibitors of AEA metabolism. Compounds containing amide and ester bonds, 13 and 37, showed pI(50) values of 4.99 and 5.08, respectively. None of the compounds showed obvious affinity for CB(1) or CB(2) receptors expressed on Chinese hamster ovary (CHO) cells. It is concluded that although none of the compounds were dramatically more potent than PEA itself at reducing the metabolism of AEA, the lack of effect of the compounds at CB(1) and CB(2) receptors makes them useful templates for development of possible therapeutic FAAH inhibitors.

摘要

内源性脂肪酸酰胺花生四烯乙醇胺(AEA)因其对大麻素受体和香草酸受体的作用,具有许多重要的药理学特性,包括对痛觉、记忆过程、痉挛和细胞增殖的影响。由脂肪酸酰胺水解酶(FAAH)催化的AEA代谢的抑制,可增强AEA在体内的作用,因此可能是药物开发的一个有用靶点。在本研究中,我们研究了内源性替代FAAH底物棕榈酰乙醇胺(PEA)的头部基团取代是否能鉴定出预防AEA代谢的新型化合物。合成了37种PEA衍生物,棕榈酸的C16长链保持完整,包括20种烷基化、12种芳香族和4种卤代酰胺。以大鼠脑匀浆作为FAAH的来源,研究了PEA衍生物抑制FAAH催化的[(3)H]AEA水解的能力。分析抑制曲线以确定可抑制部分的效力(pI(50)值)和化合物达到的最大抑制率,因为在水性环境中的溶解度是这些化合物的一个主要问题。在烷基酰胺家族中,棕榈酰乙酰胺和棕榈酰烯丙酰胺是AEA代谢的抑制剂,pI(50)值分别为5.45和5.47。卤代衍生物(Cl和Br)的pI(50)值约为5.5,但最大抑制率相当低。N-棕榈酰乙醇胺的乙基头部链的-OH基团对于与FAAH的相互作用不是必需的。含有芳香部分的酰胺是AEA代谢的较弱抑制剂。含有酰胺和酯键的化合物13和37的pI(50)值分别为4.99和5.08。没有一种化合物对中国仓鼠卵巢(CHO)细胞上表达的CB(1)或CB(2)受体表现出明显的亲和力。得出的结论是,尽管在降低AEA代谢方面没有一种化合物比PEA本身显著更有效,但这些化合物对CB(1)和CB(2)受体无作用使其成为开发可能的治疗性FAAH抑制剂的有用模板。

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