The telencephalon is a neuronal substrate for systemic inflammatory responses in teleosts via polyamine metabolism.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 39284055.
- Also identified by DOI 10.1073/pnas.2404781121 and PMC identifier 11441480.
- Licence recorded as CC BY-NC-ND.
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Abstract
Systemic inflammation elicits sickness behaviors and fever by engaging a complex neuronal circuitry that begins in the preoptic area of the hypothalamus. Ectotherms such as teleost fish display sickness behaviors in response to infection or inflammation, seeking warmer temperatures to enhance survival via behavioral fever responses. To date, the hypothalamus is the only brain region implicated in sickness behaviors and behavioral fever in teleosts. Yet, the complexity of neurobehavioral manifestations underlying sickness responses in teleosts suggests engagement of higher processing areas of the brain. Using in vivo models of systemic inflammation in rainbow trout, we find canonical pyrogenic cytokine responses in the hypothalamus whereas in the telencephalon and the optic tectum <i>il-1b</i> and <i>tnfa</i> expression is decoupled from <i>il-6</i> expression. Polyamine metabolism changes, characterized by accumulation of putrescine and decreases in spermine and spermidine, are recorded in the telencephalon but not hypothalamus upon systemic injection of bacteria. While systemic inflammation causes canonical behavioral fever in trout, blockade of bacterial polyamine metabolism prior to injection abrogates behavioral fever, polyamine responses, and telencephalic but not hypothalamic cytokine responses. Combined, our work identifies the telencephalon as a neuronal substrate for brain responses to systemic inflammation in teleosts and uncovers the role of polyamines as critical chemical mediators in sickness behaviors.
Medical subject headings
- Telencephalon
- Polyamines
- Inflammation
- Oncorhynchus mykiss