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Diabetes prevalence among youth

机译:年轻人中的糖尿病患病率

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摘要

Since my last review on neuroimmune communication afferents in 2008, this area has witnessed substantial growth. At a basic science level, numerous new and exciting phenomena have been described, adding both depth and complexity to the crosstalk between the immune system and the nervous system. At a translational level, accumulating evidence indicates neuroimmune interaction could be a contributing factor for many disease states, as well as an effective physiological mechanism that coordinates the activities of these two systems in healthy individuals or during tissue distress. Furthermore, new evidence suggests neuroimmune interactions are inherently dynamic: varying activities in either the nervous system or the immune system could impact interactions between them. In this review I will attempt to integrate multifarious, and sometimes disparate, findings into a modified conceptual framework that describes the concordance of neuroimmune communication through the cooperative connection between these two systems and the dysfunction that may arise when their inappropriate crosstalk occurs.
机译:自从我在2008年对神经免疫通讯传入进行最后一次回顾以来,该领域有了实质性的增长。在基础科学水平上,已经描述了许多新的令人兴奋的现象,这增加了免疫系统和神经系统之间的串扰的深度和复杂性。在翻译水平上,越来越多的证据表明神经免疫相互作用可能是许多疾病状态的一个成因,并且是协调健康个体或组织窘迫中这两个系统活动的有效生理机制。此外,新的证据表明神经免疫相互作用具有内在的动态性:神经系统或免疫系统中不同的活动都可能影响它们之间的相互作用。在这篇综述中,我将尝试将各种各样的,有时是完全不同的发现整合到一个经过修改的概念框架中,该框架描述了通过这两个系统之间的协作连接以及在发生不适当的串扰时可能出现的功能障碍而导致的神经免疫沟通的协调性。

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