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用化合物48/80处理后,肌肽(β-丙氨酰-L-组氨酸)分解增强及组胺代谢增强。

Enhanced carnosine (beta-alanyl-L-histidine) breakdown and histamine metabolism following treatment with compound 48/80.

作者信息

Greene S M, Margolis F L, Grillo M, Fisher H

出版信息

Eur J Pharmacol. 1984 Mar 16;99(1):79-84. doi: 10.1016/0014-2999(84)90434-5.

Abstract

We have previously suggested that carnosine may serve as a reservoir for histidine to be used as a source of histamine in the trauma response of rats. In this study we report the effect of stimulation of histamine-forming capacity by compound 48/80 on muscle carnosinase (C'ASE) and histidine decarboxylase (HDC) activities as well as on muscle carnosine and histamine concentrations. Male rats (180 g) were injected i.p. with 5 mg/kg bw of compound 48/80 and C'ASE and HDC activities as well as carnosine, histidine and histamine concentrations were monitored over a 72 h period post-injection. This treatment resulted in an 120% increase in muscle HDC activity and an 110% increase in muscle histamine concentration at 15 min post-injection, followed by an 80% increase in muscle C'ASE activity at 1 h and a 100% reduction in muscle carnosine concentration at 24 h post-injection when compared to control animals injected with 0.9% saline. Histidine concentration was not affected by treatment. The time frame of response, a rapid increase in muscle HDC activity and in muscle histamine concentration followed by an increase in muscle C'ASE activity and a later decrease in muscle carnosine concentration, suggests that carnosine is hydrolysed to liberate histidine and that carnosine, as a reservoir for histidine, is mobilized to maintain a constant muscle concentration of histidine for histamine synthesis.

摘要

我们之前曾提出,肌肽可能作为组氨酸的储存库,在大鼠的创伤反应中用作组胺的来源。在本研究中,我们报告了化合物48/80刺激组胺形成能力对肌肉肌肽酶(C'ASE)和组氨酸脱羧酶(HDC)活性以及肌肉肌肽和组胺浓度的影响。给雄性大鼠(180 g)腹腔注射5 mg/kg体重的化合物48/80,并在注射后72小时内监测C'ASE和HDC活性以及肌肽、组氨酸和组胺浓度。与注射0.9%生理盐水的对照动物相比,该处理导致注射后15分钟时肌肉HDC活性增加120%,肌肉组胺浓度增加110%,随后在1小时时肌肉C'ASE活性增加80%,在注射后24小时时肌肉肌肽浓度降低100%。组氨酸浓度不受处理影响。反应的时间框架,即肌肉HDC活性和肌肉组胺浓度迅速增加,随后肌肉C'ASE活性增加,肌肉肌肽浓度随后降低,表明肌肽被水解以释放组氨酸,并且肌肽作为组氨酸的储存库被动员起来,以维持肌肉中用于组胺合成的组氨酸浓度恒定。

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