肾脏健康和疾病中的神经免疫相互作用:肾神经的作用

IF 3.2 4区 医学 Q2 NEUROSCIENCES
Madeline M. Gauthier, Sebastien Hayoz, Christopher T. Banek
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引用次数: 0

摘要

在过去的几十年里,肾神经及其在生理和疾病中的作用一直是人们越来越感兴趣的话题。肾脏炎症会导致许多心肾疾病,包括高血压、慢性肾病和多囊肾病。关于肾交感神经在生理上的作用,我们已经知道很多了——它们参与钠重吸收、肾素释放和肾血管阻力的调节。相比之下,人们对传入或“感觉”肾神经知之甚少,它将信号从肾脏传递到大脑。虽然在正常生理学背景下对这些神经仍有很多未知,但对它们对疾病状态的贡献所知更少。此外,肾神经和免疫系统之间的串扰可能会增加或调节疾病,这一点已经变得很明显。来自其他领域的研究,特别是疼痛研究,为神经免疫串扰提供了重要的见解。交感肾神经活动可能增加免疫细胞募集,但研究传入肾神经与免疫系统之间相互作用的工作少得多。来自其他领域的证据表明,炎症可能增强传入肾神经的活动。此外,这些神经可能通过释放传入特异性神经递质而加剧肾脏炎症。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Neuroimmune interplay in kidney health and disease: Role of renal nerves

Renal nerves and their role in physiology and disease have been a topic of increasing interest in the past few decades. Renal inflammation contributes to many cardiorenal disease conditions, including hypertension, chronic kidney disease, and polycystic kidney disease. Much is known about the role of renal sympathetic nerves in physiology – they contribute to the regulation of sodium reabsorption, renin release, and renal vascular resistance. In contrast, far less is known about afferent, or “sensory,” renal nerves, which convey signals from the kidney to the brain. While much remains unknown about these nerves in the context of normal physiology, even less is known about their contribution to disease states. Furthermore, it has become apparent that the crosstalk between renal nerves and the immune system may augment or modulate disease. Research from other fields, especially pain research, has provided critical insight into neuroimmune crosstalk. Sympathetic renal nerve activity may increase immune cell recruitment, but far less work has been done investigating the interplay between afferent renal nerves and the immune system. Evidence from other fields suggests that inflammation may augment afferent renal nerve activity. Furthermore, these nerves may exacerbate renal inflammation through the release of afferent-specific neurotransmitters.

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来源期刊
CiteScore
5.80
自引率
7.40%
发文量
83
审稿时长
66 days
期刊介绍: This is an international journal with broad coverage of all aspects of the autonomic nervous system in man and animals. The main areas of interest include the innervation of blood vessels and viscera, autonomic ganglia, efferent and afferent autonomic pathways, and autonomic nuclei and pathways in the central nervous system. The Editors will consider papers that deal with any aspect of the autonomic nervous system, including structure, physiology, pharmacology, biochemistry, development, evolution, ageing, behavioural aspects, integrative role and influence on emotional and physical states of the body. Interdisciplinary studies will be encouraged. Studies dealing with human pathology will be also welcome.
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