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嘌呤核苷酸及其他化合物对组胺和组氨酸摄取的影响。

Effect of purine nucleotides and other compounds on the uptake of histamine and histidine.

作者信息

Assem E S

出版信息

Agents Actions. 1982 Apr;12(1-2):203-6. doi: 10.1007/BF01965146.

Abstract

The uptake of 14C-ring labelled histamine and histidine was studied in human and guinea-pig leucocytes, and in rat peritoneal mast cells. Histamine uptake by sensitized human leucocytes was partly released by antigen or anti-IgE challenge, suggesting that histamine is taken up by the same cells that synthesize and secrete that amine, i.e. basophils. Histamine antagonists, particularly of the H2-subclass, had an inhibitory effect, but histamine agonists had a relatively small and inconsistent effect. Adrenoceptor stimulants and phosphodiesterase inhibitors produced small effects, but dibutyryl cAMP at a concentration of 4-10 mM consistently increased histamine uptake by more than 100% during a 30 min incubation. By contrast, ATP exerted an inhibitory effect, starting at a concentration of 0.2 mM and reaching a maximum (90% inhibition) at 10 mM. Histidine uptake was inhibited by ATP and slightly stimulated by cAMP. Propranolol caused stimulation of histamine uptake and inhibition of histidine uptake at micromolar concentrations. These results suggest that the uptake of histamine is not due to simple diffusion. Although it does not contribute significantly to total cell histamine content or to the removal mechanism of extracellular histamine, it may contribute to the auto-regulatory processes modulating histamine release, synthesis and metabolism. It may also have a significant effect on the extracellular level of histamine, under the influence of drugs or in pathological states.

摘要

对人及豚鼠白细胞和大鼠腹膜肥大细胞摄取¹⁴C环标记的组胺和组氨酸进行了研究。致敏人白细胞摄取的组胺部分可因抗原或抗IgE激发而释放,这表明组胺被合成和分泌该胺类的相同细胞摄取,即嗜碱性粒细胞。组胺拮抗剂,尤其是H2亚类拮抗剂,具有抑制作用,但组胺激动剂的作用相对较小且不一致。肾上腺素能受体激动剂和磷酸二酯酶抑制剂产生的作用较小,但在30分钟孵育期间,浓度为4 - 10 mM的二丁酰环磷酸腺苷(dibutyryl cAMP)能持续使组胺摄取增加超过100%。相比之下,ATP从0.2 mM浓度开始发挥抑制作用,在10 mM时达到最大抑制效果(90%抑制)。ATP抑制组氨酸摄取,而环磷酸腺苷(cAMP)对其有轻微刺激作用。在微摩尔浓度下,普萘洛尔能刺激组胺摄取并抑制组氨酸摄取。这些结果表明,组胺的摄取并非简单扩散所致。尽管它对细胞内组胺总量或细胞外组胺的清除机制贡献不大,但它可能有助于调节组胺释放、合成和代谢的自动调节过程。在药物影响或病理状态下,它也可能对细胞外组胺水平产生显著影响。

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