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首页> 外文期刊>Neuroimmunomodulation >Evaluation of stress systems by applying noninvasive methodologies: measurements of neuroimmune biomarkers in the sweat, heart rate variability and salivary cortisol.
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Evaluation of stress systems by applying noninvasive methodologies: measurements of neuroimmune biomarkers in the sweat, heart rate variability and salivary cortisol.

机译:通过使用非侵入性方法评估压力系统:汗液,心率变异性和唾液皮质醇的神经免疫生物标记物的测量。

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摘要

The two main arms of the stress system include the autonomic nervous system (ANS) and the hypothalamic-pituitary-adrenal (HPA) axis. These two neural stress systems coordinate the response of many other physiological systems to a stressor, including the immune and cardiovascular systems, bringing the body back to homeostasis. The nervous and immune systems communicate with each other in a bidirectional manner. In this review, we will discuss the use of noninvasive methods to evaluate the immune system, ANS and HPA axis. Collection of sweat and saliva, and measurement of heart rate variability are noninvasive methods that can be applied to evaluate neuroimmune interactions. Recently, we validated a new methodology to simultaneously evaluate a large array of neural and immune biomarkers in sweat, collected through cutaneous sweat patches and measured by recycling immunoaffinity chromatography. Noninvasive and ambulatory methodologies of biomarker collection can overcome several limitations intrinsic to invasive methods, such as reducing the stress triggered by collection itself and allowing a wider application to field and community-based settings. Ultimately, simultaneous evaluation of neural and immune systems with noninvasive techniques will help elucidate the underlying interactions of these systems and their role in disease susceptibility and progression of stress-related disorders.
机译:压力系统的两个主要方面包括自主神经系统(ANS)和下丘脑-垂体-肾上腺(HPA)轴。这两个神经压力系统协调许多其他生理系统对压力源的响应,包括免疫系统和心血管系统,使身体恢复体内平衡。神经系统和免疫系统以双向方式相互通信。在这篇综述中,我们将讨论使用非侵入性方法来评估免疫系统,ANS和HPA轴。汗液和唾液的收集以及心率变异性的测量是非侵入性方法,可用于评估神经免疫相互作用。最近,我们验证了一种新方法,可同时评估汗液中大量的神经和免疫生物标记物,这些标记物是通过皮肤汗液斑块收集的,并通过回收免疫亲和色谱法进行测量。生物标志物收集的非侵入性和非卧床方法可以克服侵入性方​​法固有的一些局限性,例如减少由收集物本身触发的压力,并允许将其广泛应用于野外和社区环境。最终,用无创技术同时评估神经和免疫系统将有助于阐明这些系统的潜在相互作用,以及它们在疾病易感性和与压力有关的疾病进展中的作用。

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