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应激状态下褪黑素和皮质酮的生理浓度及其与吞噬活性的关系。

Physiological concentrations of melatonin and corticosterone in stress and their relationship with phagocytic activity.

作者信息

Barriga C, Martín M I, Ortega E, Rodriguez A B

机构信息

Department of Physiology, University of Extremadura, Badajoz. Spain.

出版信息

J Neuroendocrinol. 2002 Sep;14(9):691-5. doi: 10.1046/j.1365-2826.2002.00823.x.

Abstract

The aim of the present work was to investigate the possible connection between melatonin, corticosterone and the nonspecific immune response under both basal and stressed conditions. The concentrations used in the present study were as determined in an earlier work, and corresponded to the minimum and maximum concentrations of the hormones melatonin and corticosterone over one circadian cycle in mice subjected to stress and in a basal group of mice. The concentrations were 15 pg/ml and 90 pg/ml of melatonin and 50 ng/ml and 200 ng/ml of corticosterone for incubations of the basal group macrophages, and 15 pg/ml and 70 pg/ml and 200 ng/ml and 500 ng/ml of melatonin and corticosterone, respectively, for incubations of macrophages from the group of stressed mice. The results indicate that corticosterone stimulates antigen ingestion at all physiological doses tested in the macrophages from the unstressed mice. The greatest phagocytic stimulation was obtained in macrophages from mice in a basal situation, and which had been incubated with the diurnal concentrations of the two hormones (maximum corticosterone 200 ng/ml; minimum melatonin 15 pg/ml). When the macrophages were from stressed mice, neither corticosterone nor melatonin led to any change in their phagocytic activity.

摘要

本研究的目的是探讨褪黑素、皮质酮与基础状态和应激状态下非特异性免疫反应之间的可能联系。本研究中使用的浓度是根据早期研究确定的,分别对应于应激小鼠和基础组小鼠一个昼夜周期内褪黑素和皮质酮的最低和最高浓度。基础组巨噬细胞孵育时,褪黑素浓度为15 pg/ml和90 pg/ml,皮质酮浓度为50 ng/ml和200 ng/ml;应激组小鼠巨噬细胞孵育时,褪黑素浓度分别为15 pg/ml和70 pg/ml,皮质酮浓度分别为200 ng/ml和500 ng/ml。结果表明,在未应激小鼠巨噬细胞中测试的所有生理剂量下,皮质酮均能刺激抗原摄取。在基础状态下的小鼠巨噬细胞中,当用两种激素的昼夜浓度(皮质酮最高200 ng/ml;褪黑素最低15 pg/ml)孵育时,获得了最大的吞噬刺激。当巨噬细胞来自应激小鼠时,皮质酮和褪黑素均未导致其吞噬活性发生任何变化。

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