Immune-mediated denervation of the pineal gland underlies sleep disturbance in cardiac disease

2023-07-21 | journal article

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​Immune-mediated denervation of the pineal gland underlies sleep disturbance in cardiac disease​
Ziegler, K. A.; Ahles, A.; Dueck, A.; Esfandyari, D.; Pichler, P.; Weber, K. & Kotschi, S. et al.​ (2023) 
Science381(6655) pp. 285​-290​.​ DOI: https://doi.org/10.1126/science.abn6366 

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Authors
Ziegler, Karin A.; Ahles, Andrea; Dueck, Anne; Esfandyari, Dena; Pichler, Pauline; Weber, Karolin; Kotschi, Stefan; Bartelt, Alexander; Sinicina, Inga; Graw, Matthias; Leonhardt, Heinrich; Weckbach, Ludwig T.; Massberg, Steffen; Schifferer, Martina; Simons, Mikael; Hoeher, Luciano; Luo, Jie; Ertürk, Ali; Schiattarella, Gabriele G.; Sassi, Yassine; Misgeld, Thomas; Engelhardt, Stefan
Abstract
Disruption of the physiologic sleep-wake cycle and low melatonin levels frequently accompany cardiac disease, yet the underlying mechanism has remained enigmatic. Immunostaining of sympathetic axons in optically cleared pineal glands from humans and mice with cardiac disease revealed their substantial denervation compared with controls. Spatial, single-cell, nuclear, and bulk RNA sequencing traced this defect back to the superior cervical ganglia (SCG), which responded to cardiac disease with accumulation of inflammatory macrophages, fibrosis, and the selective loss of pineal gland-innervating neurons. Depletion of macrophages in the SCG prevented disease-associated denervation of the pineal gland and restored physiological melatonin secretion. Our data identify the mechanism by which diurnal rhythmicity in cardiac disease is disturbed and suggest a target for therapeutic intervention.
Issue Date
21-July-2023
Journal
Science 
Project
TRR 274: Checkpoints of Central Nervous System Recovery 
Working Group
RG Misgeld 
ISSN
0036-8075
eISSN
1095-9203
Language
English

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