Steroids and Autoimmunity.

2区 医学 Q2 Medicine Frontiers of Hormone Research Pub Date : 2017-01-01 Epub Date: 2017-02-28 DOI:10.1159/000452911
Amelia Chiara Trombetta, Marianna Meroni, Maurizio Cutolo
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引用次数: 25

Abstract

From the middle of the 19th century, it is known that endocrine and immune systems interact bi-directionally in different processes that ensure organism homeostasis. Endocrine and nervous systems have a pivotal role in the balancing of pro- and anti-inflammatory functions of immune system, and constitute a complex circadian neuroendocrine network. Autoimmune diseases have in fact a complex pathogenic origin in which the importance of endocrine system was demonstrated. In this chapter, we will mention the structure and function of steroidal hormones involved in the neuroendocrine immune network and we will address the ways in which endocrine and immune systems influence each other, in a bi-directional fashion. Adrenal hormones, sex hormones, vitamin D, and melatonin and prolactin importantly all contribute to the homeostasis of the immune system. Indeed, some of the steroidal hormone activities determine inhibition or stimulation of immune system components, in both physiological (i.e. suppression of an unwanted response in pregnancy, or stimulation of a protective response in infections) and pathological conditions. We will finally mention the rationale for optimization of exogenous administration of glucocorticoids in chronic autoimmune diseases, and the latest developments concerning these drugs.

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类固醇和自身免疫
从19世纪中期开始,人们就知道内分泌和免疫系统在不同的过程中双向相互作用,以确保生物体的稳态。内分泌和神经系统在平衡免疫系统的促炎和抗炎功能中起着关键作用,构成了一个复杂的昼夜神经内分泌网络。自身免疫性疾病具有复杂的发病起源,其中内分泌系统的重要性得到了证实。在本章中,我们将提到涉及神经内分泌免疫网络的甾体激素的结构和功能,并将讨论内分泌和免疫系统以双向方式相互影响的方式。肾上腺激素、性激素、维生素D、褪黑激素和催乳素都有助于免疫系统的稳态。事实上,一些甾体激素的活性决定了免疫系统成分的抑制或刺激,在生理上(即在怀孕时抑制不想要的反应,或在感染时刺激保护性反应)和病理条件下。最后,我们将提到优化糖皮质激素外源性给药治疗慢性自身免疫性疾病的基本原理,以及这些药物的最新进展。
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来源期刊
Frontiers of Hormone Research
Frontiers of Hormone Research 医学-内分泌学与代谢
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期刊介绍: A series of integrated overviews on cutting-edge topics New sophisticated technologies and methodological approaches in diagnostics and therapeutics have led to significant improvements in identifying and characterizing an increasing number of medical conditions, which is particularly true for all aspects of endocrine and metabolic dysfunctions. Novel insights in endocrine physiology and pathophysiology allow for new perspectives in clinical management and thus lead to the development of molecular, personalized treatments. In view of this, the active interplay between basic scientists and clinicians has become fundamental, both to provide patients with the most appropriate care and to advance future research.
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