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压力反应对无脊椎动物免疫功能的影响:从进化角度看古老联系。

The effects of the stress response on immune function in invertebrates: an evolutionary perspective on an ancient connection.

机构信息

Dept. of Psychology and Neuroscience, Dalhousie Univ., Halifax, NS B3H 4R2, Canada.

出版信息

Horm Behav. 2012 Aug;62(3):324-30. doi: 10.1016/j.yhbeh.2012.02.012. Epub 2012 Feb 21.

Abstract

Stress-induced changes in immune function occur in animals across phyla, and these effects are usually immunosuppressive. The function of this immunomodulation remains elusive; however, the existence of specialized receptors on immune cells suggests that it is adaptive. A comparative approach may provide a useful perspective. Although invertebrates have simpler endocrine/neuroendocrine systems and immune systems than vertebrates, they have robust stress responses that include the release of stress hormones/neurohormones. Stress hormones modify immune function in mollusks, insects, and crustaceans. As in vertebrates, the effects of stress hormones/neurohormones on invertebrate immune function are complex, and are not always immunosuppressive. They are context-, stressor-, time- and concentration-dependent. Stress hormone effects on invertebrate immune function may help to re-align resources during fight-or-flight behavior. The data are consistent with the hypothesis that stress hormones induce a reconfiguration of networks at molecular, cellular and physiological levels that allow the animal to maintain optimal immunity as the internal environment changes. This reconfiguration enhances some immune functions while suppressing others. Knowing the molecular details of these shifts will be critical for understanding the adaptive function of stress hormones on immune function.

摘要

压力导致的免疫功能变化存在于各个动物门的动物中,通常这些变化是免疫抑制的。这种免疫调节的功能仍然难以捉摸;然而,免疫细胞上存在专门的受体表明它具有适应性。比较的方法可能提供一个有用的视角。尽管无脊椎动物的内分泌/神经内分泌系统和免疫系统比脊椎动物简单,但它们具有强大的应激反应,包括应激激素/神经激素的释放。应激激素会改变软体动物、昆虫和甲壳类动物的免疫功能。与脊椎动物一样,应激激素/神经激素对无脊椎动物免疫功能的影响是复杂的,并不总是免疫抑制的。它们取决于环境、应激源、时间和浓度。应激激素对无脊椎动物免疫功能的影响可能有助于在战斗或逃跑行为中重新调整资源。这些数据与应激激素诱导动物在分子、细胞和生理水平上重新配置网络的假设一致,使动物能够在内部环境变化时保持最佳的免疫能力。这种重新配置增强了一些免疫功能,同时抑制了其他功能。了解这些变化的分子细节对于理解应激激素对免疫功能的适应性功能至关重要。

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