T cellscircadian systemimmunological memorysleep and immune functionslow wave sleep
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Abstract (AI)
Sleep and the circadian system exert a strong regulatory influence on immune functions. Investigations of the normal sleep-wake cycle showed that immune parameters like numbers of undifferentiated naïve T cells and the production of pro-inflammatory cytokines exhibit peaks during early nocturnal sleep whereas circulating numbers of immune cells with immediate effector functions, like cytotoxic natural killer cells, as well as anti-inflammatory cytokine activity peak during daytime wakefulness. Although it is difficult to entirely dissect the influence of sleep from that of the circadian rhythm, comparisons of the effects of nocturnal sleep with those of 24-h periods of wakefulness suggest that sleep facilitates the extravasation of T cells and their possible redistribution to lymph nodes. Moreover, such studies revealed a selectively enhancing influence of sleep on cytokines promoting the interaction between antigen presenting cells and T helper cells, like interleukin-12. Sleep on the night after experimental vaccinations against hepatitis A produced a strong and persistent increase in the number of antigen-specific Th cells and antibody titres. Together these findings indicate a specific role of sleep in the formation of immunological memory. This role appears to be associated in particular with the stage of slow wave sleep and the accompanying pro-inflammatory endocrine milieu that is hallmarked by high growth hormone and prolactin levels and low cortisol and catecholamine concentrations.
Key Findings
1
Compared with prolonged wakefulness, sleep promotes T-cell extravasation and potential redistribution to lymph nodes.
2
Early nocturnal sleep increases naïve T-cell numbers and pro-inflammatory cytokine production, whereas daytime wakefulness increases cytotoxic natural killer cells and anti-inflammatory activity.
3
Post-vaccination sleep strongly and persistently increases antigen-specific T helper cells and antibody titres, indicating a role in immunological memory formation, particularly during slow-wave sleep.
4
Sleep and circadian rhythms differentially regulate immune parameters across the day-night cycle.
5
Sleep selectively enhances cytokines such as interleukin-12 that support interactions between antigen-presenting cells and T helper cells.
6
This immune-enhancing role is associated with high growth hormone and prolactin and low cortisol and catecholamine levels during slow-wave sleep.
Research Object
sleep and the circadian system in relation to immune function
Research Subject
regulation of immune-cell dynamics, cytokine activity, and the formation of immunological memory across the sleep–wake cycle, particularly during slow-wave sleep
Publication Details
Publication Date
2011-11-09
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