Mellstrom B, Iadarola M J, Yang H Y, Costa E
J Pharmacol Exp Ther. 1986 Oct;239(1):174-8.
The heptapeptide Met5-enkephalin-Arg6-Phe7 (YGGFMRF) is cleaved at a high rate by tissue peptidases including dipeptidyl carboxypeptidase. The inhibitor, Hoe 498 diacid (2-[N-[(S)-1-carboxy-3-phenylpropyl]-L-alanyl]-(1S,3S,5S)-2-azabicyclo- [3.3.0] octane-3-carboxylic acid), was found to be highly effective in blocking YGGFMRF degradation by a dipeptidyl carboxypeptidase present in a preparation of mouse striatal microsomes. The recovery of YGGFMRF released from rat striatal slices was increased in the presence of Hoe 498 diacid. Furthermore, the recovery of YGGFMRF injected into the caudate was increased in rats pretreated i.p. with Hoe 498 diacid. After i.v. or i.p. injections both Hoe 498 diacid and its prodrug Hoe 498 monoester (2-[N-[(S)-1-ethoxycarbonyl-3-phenylpropyl]-L-alanyl]-(1S,3S,5S)-2- azabicyclo [3.3.0] octane-3-carboxylic acid) were detected in rat cerebrospinal fluid and the dipeptidyl carboxypeptidase activity in cerebrospinal fluid was inhibited. These observations indicate that endogenously released YGGFMRF is protected from degradation by Hoe 498 diacid and that systemically administered Hoe 498 diacid or monoester penetrate the blood-brain barrier and inhibit brain and cerebrospinal fluid dipeptidyl carboxypeptidase activity. This potent inhibitor may be useful to block YGGFMRF inactivation in studies of the pharmacology and physiology of YGGFMRF. It is also possible that some of the cerebral effects of these compounds may be referable to an enhancement of YGGFMRF action in the central nervous system.
七肽甲硫氨酸脑啡肽-精氨酸-苯丙氨酸(YGGFMRF)被包括二肽基羧肽酶在内的组织肽酶以高比率裂解。发现抑制剂Hoe 498二酸(2-[N-[(S)-1-羧基-3-苯丙基]-L-丙氨酰基]-(1S,3S,5S)-2-氮杂双环[3.3.0]辛烷-3-羧酸)在阻断小鼠纹状体微粒体制剂中存在的二肽基羧肽酶对YGGFMRF的降解方面非常有效。在Hoe 498二酸存在的情况下,从大鼠纹状体切片释放的YGGFMRF的回收率增加。此外,在经腹腔注射Hoe 498二酸预处理的大鼠中,注入尾状核的YGGFMRF的回收率增加。静脉注射或腹腔注射后,在大鼠脑脊液中检测到Hoe 498二酸及其前药Hoe 498单酯(2-[N-[(S)-1-乙氧羰基-3-苯丙基]-L-丙氨酰基]-(1S,3S,5S)-2-氮杂双环[3.3.0]辛烷-3-羧酸),并且脑脊液中的二肽基羧肽酶活性受到抑制。这些观察结果表明,内源性释放的YGGFMRF受到Hoe 498二酸的保护而不被降解,并且全身给药的Hoe 498二酸或单酯可穿透血脑屏障并抑制脑和脑脊液中的二肽基羧肽酶活性。这种强效抑制剂在YGGFMRF的药理学和生理学研究中可能有助于阻断YGGFMRF的失活。这些化合物的一些脑效应也可能归因于中枢神经系统中YGGFMRF作用的增强。