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右泛醇的衍生物。II. 含有叔氮和季氮杂环的氨基酸酯盐,其水溶性增强。

Derivatives of dexanabinol. II. Salts of amino acid esters containing tertiary and quaternary heterocyclic nitrogen with increased water-solubility.

作者信息

Pop E, Soti F, Brewster M E, Barenholz Y, Korablyov V, Mechoulam R, Nadler V, Biegon A

机构信息

Pharmos Corporation, Alachua, Florida 32615, USA.

出版信息

Pharm Res. 1996 Mar;13(3):469-75. doi: 10.1023/a:1016017331353.

Abstract

PURPOSE

Amino acid esters containing tertiary or quaternary nitrogen heterocycles were synthesized for dexanabinol (1) and evaluated as water-soluble prodrugs or congeners.

METHODS

Syntheses were performed by conventional methods; stability studies in water, blood (rat, dog, human) and assay-media were performed by HPLC; NMDA receptor binding was determined by [3H] MK-801 displacement; neuroprotection and neurotoxicity studies were performed in cortical cell cultures.

RESULTS

7-morpholino and N-methylpiperazino acetates and butyrates and the respective N-methylmorpholinium and piperazinium iodides as well as a 3'-N-methyl morpholino butyrate and the corresponding N-methyl quaternary type derivative were synthesized. All compounds were relatively soluble in water or 10% aqueous ethanol. The examined derivatives were stable in water and generally less stable in blood and assay media. Quaternary derivatives of dexanabinol were found to hydrolyze faster. All examined compounds inhibited NMDA receptor and protected neurons against NMDA induced toxicity. Neuroprotection (with one exception) is however attributed to the parent 1 released by hydrolysis during the assay.

CONCLUSIONS

Some of the examined derivatives could be further evaluated as prodrugs on congeners of 1.

摘要

目的

合成含有叔氮或季氮杂环的氨基酸酯作为右啡烷醇(1)的水溶性前药或类似物,并进行评估。

方法

采用常规方法进行合成;通过高效液相色谱法对其在水、血液(大鼠、犬、人)及测定介质中的稳定性进行研究;通过[3H]MK - 801置换法测定N - 甲基 - D - 天冬氨酸(NMDA)受体结合情况;在皮层细胞培养中进行神经保护和神经毒性研究。

结果

合成了7 - 吗啉代和N - 甲基哌嗪基乙酸酯及丁酸酯,以及相应的N - 甲基吗啉鎓和哌嗪鎓碘化物,还有一种3'-N - 甲基吗啉代丁酸酯及相应的N - 甲基季铵型衍生物。所有化合物在水或10%乙醇水溶液中相对可溶。所检测的衍生物在水中稳定,在血液和测定介质中通常稳定性较差。发现右啡烷醇的季铵衍生物水解更快。所有检测的化合物均抑制NMDA受体,并保护神经元免受NMDA诱导的毒性。然而,神经保护作用(有一个例外)归因于测定过程中水解释放出的母体1。

结论

所检测的一些衍生物可作为1的类似物的前药进行进一步评估。

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