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细胞质钙的调节:前列腺素、前列环素、血栓素A2、锌、铜与牛磺酸之间的相互作用

Regulation of cytoplasmic calcium: interactions between prostaglandins, prostacyclin, thromboxane A2, zinc, copper and taurine.

作者信息

Horrobin D F, Manku M S, Cunnane S, Karmazyn M, Morgan R O, Ally A I, Karmall R A

出版信息

Can J Neurol Sci. 1978 Feb;5(1):93-6.

PMID:348285
Abstract

The regulation of cytoplasmic calcium is a key process in nerve tissue. Using a smooth muscle model we have shown that prostaglandin (PG) E2 probably regulates entry from extracellular fluid, whereas the release from intracellular stores depends on the interplay between thromboxane (TX) A2, PGEI and prostacyclin. Hormones and other agents interact with this system in the following ways: vasopressin, angiotensin and inositol mobilize arachidonic acid from membrane phospholipids and increase synthesis of PGE2 and TXA2, cortisol blocks this action. Prolactin and zinc mobilize dihomo-gamma-linolenic acid and increase synthesis of PGEI. These effects can be blocked by cortisol, lithium and taurine, three agents which on their own have no effect on basal PG production. Epileptogenic agents like penicillin and picrotoxin also stimulate PG synthesis, while diphenylhydantoin is a PG antagonist and diazepam is a TXA2 antagonist. The effects of all these agents occur at concentrations which are physiological in the case of the natural ones, and readily attained in human plasma in the case of the drgus. In view of recent evidence that calcium may be important in demyelination and considering the established role it plays in nerve conduction and synaptic transmission, we suggest that these observations may be of significance in understanding Friedreich's ataxia.

摘要

细胞质钙的调节是神经组织中的一个关键过程。我们利用平滑肌模型表明,前列腺素(PG)E2可能调节细胞外液的钙进入,而细胞内钙库的释放则取决于血栓素(TX)A2、PGE1和前列环素之间的相互作用。激素和其他因子以以下方式与该系统相互作用:血管加压素、血管紧张素和肌醇从膜磷脂中动员花生四烯酸,并增加PGE2和TXA2的合成,皮质醇可阻断此作用。催乳素和锌动员二高-γ-亚麻酸并增加PGE1的合成。这些作用可被皮质醇、锂和牛磺酸阻断,这三种物质本身对基础PG生成无影响。青霉素和匹鲁卡品等致痫剂也刺激PG合成,而苯妥英是一种PG拮抗剂,地西泮是一种TXA2拮抗剂。所有这些物质的作用都发生在自然物质为生理浓度、药物在人血浆中容易达到的浓度下。鉴于最近有证据表明钙在脱髓鞘中可能很重要,并考虑到其在神经传导和突触传递中已确立的作用,我们认为这些观察结果可能对理解弗里德赖希共济失调具有重要意义。

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