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[原发性免疫反应中的交感 - 肾上腺系统活动]

[Sympathico-adrenal system activity in a primary immune response].

作者信息

Vasina I G, Frolov E P, Serebriakov N G

出版信息

Zh Mikrobiol Epidemiol Immunobiol. 1975 Sep;0(9):88-92.

PMID:877
Abstract

Experiments were carried out on linear mice immunized with sheep erythrocytes; it was found that the primary immune respose developed against the background of significant changes in the state of the sympathico-adrenal system, whose activity was determined by the dynamics of catecholamines in the blood and in the tissues of a number of organs, including the thymus, the spleen and the lymph nodes. By comparing the value of specific and neurohumoral indices it was revealed that the neurohumoral shifts preceded the maximal development of the immune response. On the example of studying the catecholamine dynamics the opinion on a close association between the state of the regulatory mechanisms and the effector formations responsible for the formation of specific immunological reactions was confirmed. It is suggested that a full-value immunological response developed on condition of activation of the sympathico-adrenal system.

摘要

对用绵羊红细胞免疫的线性小鼠进行了实验;发现初次免疫反应是在交感 - 肾上腺系统状态发生显著变化的背景下发展起来的,其活性由血液以及包括胸腺、脾脏和淋巴结在内的许多器官组织中的儿茶酚胺动态决定。通过比较特异性和神经体液指标的值,发现神经体液变化先于免疫反应的最大发展。以研究儿茶酚胺动态为例,证实了关于调节机制状态与负责特异性免疫反应形成的效应器结构之间密切关联的观点。有人提出,在交感 - 肾上腺系统激活的条件下会产生充分的免疫反应。

相似文献

1
[Sympathico-adrenal system activity in a primary immune response].[原发性免疫反应中的交感 - 肾上腺系统活动]
Zh Mikrobiol Epidemiol Immunobiol. 1975 Sep;0(9):88-92.
2
Immunoregulation mediated by the sympathetic nervous system, II.由交感神经系统介导的免疫调节,II。
Cell Immunol. 1981 Sep 15;63(2):329-34. doi: 10.1016/0008-8749(81)90012-5.
3
Cells involved in the immune response. XXXIV: Suppressor cells in the thymus of the immunized rabbit capable of secreting a factor which can suppress the secretion of antibodies from antibody-forming cells in vitro.参与免疫反应的细胞。三十四:免疫兔胸腺中的抑制细胞,其能够分泌一种因子,该因子在体外可抑制抗体形成细胞分泌抗体。
Clin Immunol Immunopathol. 1986 Dec;41(3):461-78. doi: 10.1016/0090-1229(86)90017-6.
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[Formation of spontaneous and immune rosettes by the cells of the thymus and other formations of the rabbit lymphoid system].[兔胸腺细胞及淋巴系统其他组织形成自发玫瑰花结和免疫玫瑰花结的情况]
Zh Mikrobiol Epidemiol Immunobiol. 1975 Nov(11):68-73.
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Immunology of the lower respiratory tract. II. The plaque-forming response of canine lymphoid tissues to sheep erythrocytes after intrapulmonary or intravenous immunization.下呼吸道免疫学。II. 肺内或静脉内免疫后犬类淋巴组织对绵羊红细胞的空斑形成反应。
J Clin Invest. 1974 Aug;54(2):263-70. doi: 10.1172/JCI107761.
6
[Neurohumoral rearrangements in the immune response].[免疫反应中的神经体液重排]
Dokl Akad Nauk SSSR. 1980 Sep-Oct;254(1):247-50.
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Factors influencing clasmatosis in vivo. II. Dynamics of cytoplasmic cell budding in the lymphoid organs of mice on primary immunization.
J Reticuloendothel Soc. 1972 May;11(5):513-23.
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[Experimental cardiomyopathy and the sympathetic-adrenal system].
Biull Vsesoiuznogo Kardiol Nauchn Tsentra AMN SSSR. 1987;10(1):52-5.
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[Increase in the antitumor protection of the body by pharmacological correction of the neurohumoral status].通过神经体液状态的药理学纠正增强机体的抗肿瘤保护作用
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Spontaneously hypertensive rat Y chromosome increases indexes of sympathetic nervous system activity.自发性高血压大鼠的Y染色体增加交感神经系统活动指标。
Hypertension. 1997 Feb;29(2):613-8. doi: 10.1161/01.hyp.29.2.613.

引用本文的文献

1
Relations between immunological and neurological memory: learning ability in rats during immunostimulation.免疫记忆与神经记忆之间的关系:免疫刺激期间大鼠的学习能力。
Neurosci Behav Physiol. 1978 Jan-Mar;9(1):83-6. doi: 10.1007/BF01182661.