电场作用下大鼠肾上腺皮质酮的直接提取。我。

Julio M. Cortés, Fernand G. Péron, Miss C. Lilly
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引用次数: 6

摘要

1.1. 本文介绍了一种在七室电渗析装置的中腔施加电场下直接从大鼠肾上腺中提取皮质酮的方法。用阴离子透膜和阳离子透膜将填充有醋酸缓冲液或水的腔室分开。在此条件下,不能提取完整的腺体和囊体。肾上腺皮质酮的提取效果良好,采用半切肾上腺和阳离子透膜限制中间或提取室。在这种情况下,95%的皮质酮在不到5分钟的时间内被提取,而在没有阳离子迁移到中腔的情况下,很少或没有从腺体中提取皮质酮。当阳离子渗透膜限制萃取室的阳极侧,阴离子渗透膜限制萃取室的阴极侧时,皮质酮的合成就会重新发生。皮质酮的提取量还取决于肾上腺半部分在提取腔中的方向和位置。用电流快速而几乎完全地提取皮质酮表明了带电荷的皮质酮复合物的运动。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Direct extraction of corticosterone from rat adrenal glands under an applied electrical field. I.

  • 1.

    1. A method is described by which corticosterone was directly extracted from rat adrenal glands under an applied electrical field in the middle chamber of a seven-compartment electrodialysis-type apparatus. Anion- and cation-permeable membranes were used to separate the chambers which were filled with acetate buffer or water.

  • 2.

    2. With the conditions used, whole glands with intact capsules could not be extracted. Good extraction of adrenal corticosterone was obtained when halved adrenal glands were used and when cation-permeable membranes limited the middle or extraction chamber. In this case 95% of the corticosterone was extracted in less than 5 min while little or no corticosterone was extracted from the glands in the absence of cation migration into the middle chamber.

  • 3.

    3. Synthesis of corticosterone occurred de novo when a cation-permeable membrane limited the anodic side and an anion-permeable membrane the cathodic side of the extraction chamber.

  • 4.

    4. The amount of corticosterone extracted depended also on the orientation and position of the adrenal halves in the extracting chamber.

  • 5.

    5. The rapid and almost complete extraction of corticosterone with an electrical current suggests the movement of a charged corticosterone complex.

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