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首页> 外文期刊>Journal of Internal Medicine >Immune regulation of central nervous system functions: from sickness responses to pathological pain.
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Immune regulation of central nervous system functions: from sickness responses to pathological pain.

机译:中枢神经系统功能的免疫调节:从疾病反应到病理性疼痛。

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Classically, the central nervous system (CNS) and the immune system are thought to operate independently of each other. This simplistic view has been corrected in recent years, first with the recognition that the brain dynamically modulates the immune system, and later with the reverse; that is, that the immune system modulates the CNS as well. The evidence that the immune system regulates CNS functions is first reviewed. This immune-to-brain communication pathway triggers the production of a constellation of CNS-mediated phenomena, collectively referred to as 'sickness responses'. These sickness responses are created by immune-to-brain signals activating CNS glia to release glial proinflammatory cytokines. The most recently recognized member of this constellation of changes is enhanced pain responsivity. The hypothesis is then developed that pathological, chronic pain may result from 'tapping into' this ancient survival-oriented circuitry, including the activation of immune and glial cells and the release of immune/glial proinflammatory cytokines. This can occur at the level of peripheral nerves, dorsal root ganglia, spinal cord, and likely at higher brain areas. The implications of this model for human chronic pain syndromes and clinical resolution of these chronic pain states are then discussed.
机译:传统上,中枢神经系统(CNS)和免疫系统被认为彼此独立运作。近年来,这种简单的观点已得到纠正,首先是认识到大脑会动态调节免疫系统,其次是相反。也就是说,免疫系统也能调节中枢神经系统。首先回顾了免疫系统调节中枢神经系统功能的证据。这种免疫大脑的交流途径触发了中枢神经系统介导的现象群的产生,这些现象统称为“疾病反应”。这些疾病反应是由激活CNS神经胶质以释放神经胶质促炎细胞因子的免疫脑信号引起的。这种变化的星座中最近被认可的成员是增强的疼痛反应性。然后提出这样的假设,即病理学上的慢性疼痛可能是由“进入”这种古老的,以生存为导向的电路所导致的,包括免疫细胞和神经胶质细胞的激活以及免疫/神经胶质促炎细胞因子的释放。这可能发生在周围神经,背根神经节,脊髓,也可能发生在较高的大脑区域。然后讨论了该模型对人类慢性疼痛综合征的意义以及这些慢性疼痛状态的临床解决方法。

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