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免疫-神经-内分泌反射、回路与网络:生理及进化意义

Immune-Neuro-Endocrine Reflexes, Circuits, and Networks: Physiologic and Evolutionary Implications.

作者信息

Del Rey Adriana, Besedovsky Hugo O

出版信息

Front Horm Res. 2017;48:1-18. doi: 10.1159/000452902. Epub 2017 Feb 28.

Abstract

The existence of a network of interactions between the immune and nervous systems that influences host defenses and brain functions is now well-established. Here we discuss how immune and classical neuro/sensorial signals are processed in the brain and how neuro-endocrine immunoregulatory and behavioral responses are integrated. Considering the ability of brain cells to produce cytokines, originally described as immune cell products, we propose that the tripartite synapse plays a central role in the integration of neuro-endocrine-immune interactions. We also propose that the immune-neuro-endocrine responses that influence the course of transmissible and other diseases predisposing to infections can be relevant for evolution, either by restoring health or by mediating an active process of negative selection.

摘要

免疫和神经系统之间存在着影响宿主防御和大脑功能的相互作用网络,这一点现已得到充分证实。在此,我们将探讨免疫信号和经典神经/感觉信号在大脑中是如何被处理的,以及神经内分泌免疫调节和行为反应是如何整合的。鉴于脑细胞能够产生细胞因子(最初被描述为免疫细胞产物),我们认为三联突触在神经内分泌免疫相互作用的整合中起着核心作用。我们还提出,影响传染性疾病和其他易感染疾病进程的免疫-神经-内分泌反应可能与进化相关,要么通过恢复健康,要么通过介导一个积极的负选择过程。

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