Heterogeneous organization of Locus coeruleus: An intrinsic mechanism for functional complexity

•Accumulating evidences have revealed that LC is a heterogeneous nucleus in its structure and function.•The heterogeneous organization of LC-NA system mainly manifested in developmental origin, projection patterns and distribution of topography, morphology and molecular organization, electrophysiolo...

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Veröffentlicht in:Physiology & behavior 2023-09, Vol.268, p.114231-114231, Article 114231
Hauptverfasser: Ma, Hai-tao, Zhang, Hao-chen, Zuo, Zhong-fu, Liu, Ying-xue
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Sprache:eng
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Zusammenfassung:•Accumulating evidences have revealed that LC is a heterogeneous nucleus in its structure and function.•The heterogeneous organization of LC-NA system mainly manifested in developmental origin, projection patterns and distribution of topography, morphology and molecular organization, electrophysiological properties.•The functional heterogeneity probably has a close relation to its heterogeneous organization. Locus coeruleus (LC) is a small nucleus located deep in the brainstem that contains the majority of central noradrenergic neurons, which provide the primary source of noradrenaline (NA) throughout the entire central nervous system (CNS).The release of neurotransmitter NA is considered to modulate arousal, sensory processing, attention, aversive and adaptive stress responses as well as high-order cognitive function and memory, with the highly ramified axonal arborizations of LC-NA neurons sending wide projections to the targeted brain areas. For over 30 years, LC was thought to be a homogeneous nucleus in structure and function due to the widespread uniform release of NA by LC-NA neurons and simultaneous action in several CNS regions, such as the prefrontal cortex, hippocampus, cerebellum, and spinal cord. However, recent advances in neuroscience tools have revealed that LC is probably not so homogeneous as we previous thought and exhibits heterogeneity in various aspects. Accumulating studies have shown that the functional complexity of LC may be attributed to its heterogeneity in developmental origin, projection patterns, topography distribution, morphology and molecular organization, electrophysiological properties and sex differences. This review will highlight the heterogeneity of LC and its critical role in modulating diverse behavioral outcomes.
ISSN:0031-9384
1873-507X
DOI:10.1016/j.physbeh.2023.114231