Functional dichotomy in spinal- vs prefrontal-projecting locus coeruleus modules splits descending noradrenergic analgesia from ascending aversion and anxiety in rats.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 29027903.
- Also identified by DOI 10.7554/eLife.29808 and PMC identifier 5653237.
- Licence recorded as CC BY.
- The licence permits redistribution, so the abstract is shown in full and the full text is available from the publisher.
Abstract
The locus coeruleus (LC) projects throughout the brain and spinal cord and is the major source of central noradrenaline. It remains unclear whether the LC acts functionally as a single global effector or as discrete modules. Specifically, while spinal-projections from LC neurons can exert analgesic actions, it is not known whether they can act independently of ascending LC projections. Using viral vectors taken up at axon terminals, we expressed chemogenetic actuators selectively in LC neurons with spinal (<b>LC<sup>:SC</sup></b>) or prefrontal cortex (<b>LC<sup>:PFC</sup></b>) projections. Activation of the <b>LC<sup>:SC</sup></b> module produced robust, lateralised anti-nociception while activation of <b>LC<sup>:PFC</sup></b> produced aversion. In a neuropathic pain model, <b>LC<sup>:SC</sup></b> activation reduced hind-limb sensitisation and induced conditioned place preference. By contrast, activation of <b>LC<sup>:PFC</sup></b> exacerbated spontaneous pain, produced aversion and increased anxiety-like behaviour. This independent, contrasting modulation of pain-related behaviours mediated by distinct noradrenergic neuronal populations provides evidence for a modular functional organisation of the LC.
Medical subject headings
- Anxiety
- Locus Coeruleus
- Neural Pathways
- Neurons
- Nociceptive Pain