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应激源可预测性和行为控制对大鼠淋巴细胞反应性、抗体反应及神经内分泌激活的影响。

Influence of stressor predictability and behavioral control on lymphocyte reactivity, antibody responses and neuroendocrine activation in rats.

作者信息

Mormede P, Dantzer R, Michaud B, Kelley K W, Le Moal M

机构信息

Laboratoire de Psychobiologie des Comportements Adaptatifs, INRA-INSERM U259, Bordeaux, France.

出版信息

Physiol Behav. 1988;43(5):577-83. doi: 10.1016/0031-9384(88)90211-9.

Abstract

The present experiments were designed to study the influence of prediction and control of electric shocks on various aspects of immune function, and the possible intermediate role of glucocorticoid hormones. After two sessions of inescapable footshocks, the reactivity of splenocytes to concanavalin A was reduced by one third. This effect was completely reversed when each shock was preceded by a warning stimulus, even though the adrenocortical response was the same in both conditions. In another experiment, rats were submitted to ten sessions of continuous avoidance in a shuttle-box and a group of yoked animals received the same footshocks without any relationship to their shuttling behavior. Although yoked rats displayed a reduced reactivity of splenocytes to lectins, animals of the avoidance group had a reduced antibody response to sheep erythrocytes. In contrast, no difference was observed in the corticosterone or prolactin response. These data further support the importance of psychological factors on stress-induced changes in immune functions. Furthermore, they demonstrate that various aspects of the immune system are differentially affected by behavioral factors and the results argue against a major role for the adrenocortical system in mediating these changes.

摘要

本实验旨在研究电击的预测和控制对免疫功能各个方面的影响,以及糖皮质激素可能的中介作用。在经历两轮不可逃避的足部电击后,脾细胞对刀豆蛋白A的反应性降低了三分之一。当每次电击之前都有一个警告刺激时,这种效应完全逆转,尽管两种情况下肾上腺皮质反应相同。在另一项实验中,大鼠在穿梭箱中进行了十次连续回避训练,一组配对动物接受了相同的足部电击,但与它们的穿梭行为没有任何关系。尽管配对大鼠的脾细胞对凝集素的反应性降低,但回避组动物对绵羊红细胞的抗体反应降低。相比之下,在皮质酮或催乳素反应方面未观察到差异。这些数据进一步支持了心理因素对应激诱导的免疫功能变化的重要性。此外,它们表明免疫系统的各个方面受到行为因素的影响各不相同,并且结果表明肾上腺皮质系统在介导这些变化中不起主要作用。

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