The connections of Locus Coeruleus with hypothalamus: potential involvement in Alzheimer’s disease

被引:0
作者
Filippo Sean Giorgi
Alessandro Galgani
Stefano Puglisi-Allegra
Carla Letizia Busceti
Francesco Fornai
机构
[1] University of Pisa,Department of Translational Research and New Technologies in Medicine and Surgery
[2] Pisa University Hospital,Neurology Unit
[3] I.R.C.C.S. Neuromed,undefined
来源
Journal of Neural Transmission | 2021年 / 128卷
关键词
Locus Coeruleus; Hypothalamus; Noradrenaline; Sleep; Autonomic system; Neurodegenerative disorders; Alzheimer’s disease;
D O I
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中图分类号
学科分类号
摘要
The hypothalamus and Locus Coeruleus (LC) share a variety of functions, as both of them take part in the regulation of the sleep/wake cycle and in the modulation of autonomic and homeostatic activities. Such a functional interplay takes place due to the dense and complex anatomical connections linking the two brain structures. In Alzheimer’s disease (AD), the occurrence of endocrine, autonomic and sleep disturbances have been associated with the disruption of the hypothalamic network; at the same time, in this disease, the occurrence of LC degeneration is receiving growing attention for the potential roles it may have both from a pathophysiological and pathogenetic point of view. In this review, we summarize the current knowledge on the anatomical and functional connections between the LC and hypothalamus, to better understand whether the impairment of the former may be responsible for the pathological involvement of the latter, and whether the disruption of their interplay may concur to the pathophysiology of AD. Although only a few papers specifically explored this topic, intriguingly, some pre-clinical and post-mortem human studies showed that aberrant protein spreading and neuroinflammation may cause hypothalamus degeneration and that these pathological features may be linked to LC impairment. Moreover, experimental studies in rodents showed that LC plays a relevant role in modulating the hypothalamic sleep/wake cycle regulation or neuroendocrine and systemic hormones; in line with this, the degeneration of LC itself may partly explain the occurrence of hypothalamic-related symptoms in AD.
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页码:589 / 613
页数:24
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[41]  
Baloyannis IS(1978)Effect of the depletion of brain noradrenaline of the plasma FSH and growth hormone levels in ovariectomized rats Acta Endocrinol 1 245-246
[42]  
Costa VG(2021)The role of ghrelin and leptin in feeding behavior: genetic and molecular evidence Endocrinol Diabetes y Nutr 70 70-1208
[43]  
Banki CM(1977)Noradrenaline distribution in subcortical areas of the human brain Brain Res 6 e18247-1611
[44]  
Karmacsi L(2002)Noradrenergic regulation of inflammatory gene expression in brain Neurochem Int 62 188-10270
[45]  
Bissette G(1992)Gastric motility and food intake in rats after lesions of hypothalamic paraventricular nucleus Am J Physiol Regul Integr Comp Physiol 21 3523-738
[46]  
Nemeroff CB(1993)Regulation of basic fibroblast growth factor and nerve growth factor MRNA by beta-adrenergic receptor activation and adrenal steroids in rat central nervous system Mol Pharmacol 3 361-undefined
[47]  
Banks D(2019)New developments and future directions in understanding locus coeruleus – norepinephrine (LC-NE) function Brain Res 91 465-undefined
[48]  
Harris MC(1996)Region- and neurotransmitter-dependent species and strain differences in DSP-4-induced monoamine depletion in rodents Neurodegeneration 27 659-undefined
[49]  
Bekar LK(1985)Effect of locus ceruleus lesion on luteinizing hormone secretion under different experimental conditions Neuroendocrinology 58 1791-undefined
[50]  
Wei HS(1991)Selective effects of DSP-4 on locus coeruleus axons: are there pharmacologically different types of noradrenergic axons in the central nervous system? Prog Brain Res 13 236-undefined