睡眠、炎症、免疫力和感染之间的相互作用:叙述性综述

IF 3.1 4区 医学 Q3 IMMUNOLOGY Immunity, Inflammation and Disease Pub Date : 2024-10-17 DOI:10.1002/iid3.70046
Thijs Feuth
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引用次数: 0

摘要

背景 在过去几十年中,人们越来越清楚地认识到,睡眠障碍主要通过激活先天性免疫系统和增加感染风险,导致炎症介导的疾病,包括抑郁症。 方法 在 PubMed 上进行了一次全面的文献检索,以确定免疫、炎症和感染领域的相关研究成果,重点是过去 5 年的转化研究成果。 结果 生理睡眠的特点是免疫系统和睡眠结构之间的动态相互作用,早期阶段以先天性免疫和T辅助细胞1(Th1)介导的炎症增加为特征,晚期则过渡到T辅助细胞2(Th2)反应占主导地位。慢性睡眠障碍与炎症加剧和感染风险升高有关,其他炎症性疾病也可能受到影响。相反,炎症对感染的反应也会扰乱睡眠模式和结构。这篇叙述性综述总结了目前有关睡眠、免疫、炎症和感染之间复杂关系的数据,同时强调了转化方面的问题。这些相互作用的双向性在睡眠呼吸暂停、艾滋病和其他感染等特定病症中得到了探讨。此外,还指出了有可能加快我们对这些相互作用的理解的技术发展,包括可穿戴设备、人工智能和全息技术的进步。通过整合这些工具,我们有可能找到睡眠相关免疫失调的新型生物标记物和治疗靶点。 结论 本综述强调了了解和解决与睡眠障碍相关的免疫失衡问题以改善疾病预后的重要性。
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Interactions between sleep, inflammation, immunity and infections: A narrative review

Background

Over the past decades, it has become increasingly evident that sleep disturbance contributes to inflammation-mediated disease, including depression, mainly through activation of the innate immune system and to an increased risk of infections.

Methods

A comprehensive literature search was performed in PubMed to identify relevant research findings in the field of immunity, inflammation and infections, with a focus on translational research findings from the past 5 years.

Results

Physiological sleep is characterized by a dynamic interplay between the immune system and sleep architecture, marked by increased innate immunity and T helper 1 (Th1) -mediated inflammation in the early phase, transitioning to a T helper 2 (Th2) response dominating in late sleep. Chronic sleep disturbances are associated with enhanced inflammation and an elevated risk of infections, while other inflammatory diseases may also be affected. Conversely, inflammation in response to infection can also disrupt sleep patterns and architecture. This narrative review summarizes current data on the complex relationships between sleep, immunity, inflammation and infections, while highlighting translational aspects. The bidirectional nature of these interactions are addressed within specific conditions such as sleep apnea, HIV, and other infections. Furthermore, technical developments with the potential to accelerate our understanding of these interactions are identified, including advances in wearable devices, artificial intelligence, and omics technology. By integrating these tools, novel biomarkers and therapeutic targets for sleep-related immune dysregulation may be identified.

Conclusion

The review underscores the importance of understanding and addressing immune imbalance related to sleep disturbances to improve disease outcomes.

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来源期刊
Immunity, Inflammation and Disease
Immunity, Inflammation and Disease Medicine-Immunology and Allergy
CiteScore
3.60
自引率
0.00%
发文量
146
审稿时长
8 weeks
期刊介绍: Immunity, Inflammation and Disease is a peer-reviewed, open access, interdisciplinary journal providing rapid publication of research across the broad field of immunology. Immunity, Inflammation and Disease gives rapid consideration to papers in all areas of clinical and basic research. The journal is indexed in Medline and the Science Citation Index Expanded (part of Web of Science), among others. It welcomes original work that enhances the understanding of immunology in areas including: • cellular and molecular immunology • clinical immunology • allergy • immunochemistry • immunogenetics • immune signalling • immune development • imaging • mathematical modelling • autoimmunity • transplantation immunology • cancer immunology
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