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应激期间外泌汗腺组织化学变化的可能机制。

Possible mechanisms of the histochemical changes in the eccrine sweat glands during stress.

作者信息

Sokolov V E, Shabadash S A, Zelikina T I

出版信息

Biol Bull Acad Sci USSR. 1980 Jul-Aug;7(4):244-51.

PMID:7225470
Abstract

In order to determine the relative role of neural factors in the regulation of the activity of the eccrine glands of rats during stress, the cytological and cytochemical criteria of their activity that we used earlier (glycogen, isoelectric point of the mitochondria, ratio of light and dark secretory cells) were applied to the eccrine glands of rats with chemical sympathectomy, induced for four-week administration of guanethidine. The level of sweat secretion and the histochemistry of monamine oxidase and cholinesterases were also investigated. It is found that after 2-h immobilization stress and in the case of chemical sympathectomy, the eccrine glands of rats exhibit practically complete similarity in the level of sweat secretion and in various histochemical indices of the activity of the glands and the state of the neuromediator systems. In comparison with the control, in these glands the sweat secretion is increased, there is no glycogen, the number of light secretory cells is increased and the number of dark ones decreased, the isoelectric point of the mitochondria is shifted by a unit of the pH scale in the alkaline direction, the monamine oxidase activity of the mitochondria of the secretory cells and the myelinated nerves is sharply reduced, and the anticholinesterase of the nerves that interlace the gland disappears. In the case of immobilization stress there is an apparent functional denervation of the eccrine glands.

摘要

为了确定神经因素在应激期间大鼠外分泌腺活动调节中的相对作用,我们将先前使用的外分泌腺活动的细胞学和细胞化学标准(糖原、线粒体的等电点、亮细胞与暗细胞的比例)应用于经化学交感神经切除术的大鼠外分泌腺,化学交感神经切除术通过给予胍乙啶四周诱导产生。同时还研究了汗液分泌水平以及单胺氧化酶和胆碱酯酶的组织化学情况。结果发现,在2小时固定应激后以及化学交感神经切除的情况下,大鼠外分泌腺在汗液分泌水平以及腺体活动和神经介质系统状态的各种组织化学指标方面表现出几乎完全相似。与对照组相比,这些腺体中汗液分泌增加,没有糖原,亮分泌细胞数量增加而暗分泌细胞数量减少,线粒体的等电点在碱性方向上偏移了一个pH单位,分泌细胞和有髓神经线粒体的单胺氧化酶活性急剧降低,并且环绕腺体的神经的抗胆碱酯酶消失。在固定应激的情况下,外分泌腺存在明显的功能性去神经支配。

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