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银杏叶提取物与氯丙嗪对大鼠红细胞体外渗透脆性的比较作用(作者译)

[Comparative effects of an extract of Ginkgo biloba and chlorpromazine on the in vitro osmotic fragility of rat erythrocytes (author's transl)].

作者信息

Etienne A, Hecquet F, Clostre F, Defeudis F V

出版信息

J Pharmacol. 1982 Apr-Jun;13(2):291-8.

PMID:6285084
Abstract

The effects of different concentrations of an extract of Ginkgo biloba (Gb) and of chlorpromazine (CPZ) on the osmotic lysis of rat erythrocytes (produced by dilution of the incubation medium by 30%-70%) were compared in vitro. The erythrocytes were incubated together with Gb or Cpz at the time of the hemolytic reaction at 25 degrees or 37 degrees C in either a simple phosphate buffer or in a more complete buffer containing inorganic salts at physiological concentrations. CPZ produced a dose-dependent increase in the membrane resistance, the maximum effect occurring at 10(-4) M regardless of the experimental conditions used. Gb also increased membrane resistance, but to a lesser extent than CPZ. In addition, Gb was more effective under conditions which increased erythrocyte membrane fragility; i.e., 37 degrees C, simple phosphate buffer. The mechanism of action of Gb seems to differ from that of CPZ. The activity of CPZ (as a membrane stabilizer) is, in part, due to its penetration into the membrane phospholipid layer. Gb might act in a similar manner, but could also modify Na+ transport across the cell membrane by an action on adrenergic receptors, or could stimulate Na+, K+-ATP-ase activity, as has been described for norepinephrine. As Gb contains many molecular constituents: its action on the membrane is likely to be quite complex; but this effect could be associate with its vascular therapeutic action.

摘要

在体外比较了不同浓度的银杏提取物(Gb)和氯丙嗪(CPZ)对大鼠红细胞渗透裂解(通过将孵育培养基稀释30%-70%产生)的影响。在溶血反应时,将红细胞与Gb或CPZ一起在25℃或37℃下于简单磷酸盐缓冲液或含有生理浓度无机盐的更完全缓冲液中孵育。CPZ使膜电阻呈剂量依赖性增加,无论使用何种实验条件,最大效应均出现在10^(-4) M时。Gb也增加膜电阻,但程度小于CPZ。此外,Gb在增加红细胞膜脆性的条件下更有效;即37℃、简单磷酸盐缓冲液。Gb的作用机制似乎与CPZ不同。CPZ(作为膜稳定剂)的活性部分归因于其渗透到膜磷脂层中。Gb可能以类似方式起作用,但也可能通过作用于肾上腺素能受体来改变跨细胞膜的Na+转运,或者可能刺激Na+、K+-ATP酶活性,正如去甲肾上腺素所描述的那样。由于Gb含有许多分子成分:其对膜的作用可能相当复杂;但这种效应可能与其血管治疗作用相关。

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