A randomized clinical trial of the impact of melatonin on influenza vaccine: Outcomes from the melatonin and vaccine response immunity and chronobiology study (MAVRICS)

Рандомизированное клиническое исследование влияния мелатонина на вакцину против гриппа: результаты исследования иммунитета, ответа на вакцину и хронобиологии мелатонина (MAVRICS)
Rachel U. Lee, Nora L. Watson, Gena Glickman, Lindsey White, Sandra D. Isidean, Chad K. Porter, Monique Hollis-Perry, Samuel Walther, Santina Maiolatesi, Martha Sedegah, Harini Ganeshan, Jun Huang, David A. Boulifard, Daniel Ewing, Appavu K. Sundaram, E. Harrison, Katherine J Detizio, María Belmonte, Arnel Belmonte, Sandra Inoue, Alexandra Easterling, Elizabeth Cooper, Janine Danko
2024-11-13

IFN-γ and granzyme B co-expressionhemagglutination-inhibition assayinfluenza vaccinemelatoninvaccine immunogenicity
Vaccine immunogenicity is affected by a variety of factors. Melatonin has been reported to affect immune responses to vaccines and infection. This was a randomized open-label trial – in which adults scheduled to receive the influenza vaccine were randomized to 5 mg melatonin or control to evaluate the effect of post-vaccination melatonin on humoral (hemagglutination-inhibition assays, HAI) and cellular (FluoroSpot) vaccine-specific cytokine responses 14–21 days post-vaccination. A total of 108 participants (melatonin treatment group: 53; control group: 55) completed the study. The groups were similar in baseline characteristics, including sleep as measured by the Pittsburgh Sleep Quality Index. Seroconversion rates or geometric mean fold rises (GMFR) in HAI titers did not vary by treatment group. There were also no statistically significant differences between pre- and post-vaccination levels of interferon gamma (IFN-γ) or granzyme B (GzB) by treatment; however, there was a significantly higher fold rise in the double secretor (IFN-γ + GzB) peripheral blood mononuclear cells for influenza vaccine in subjects taking daily melatonin (GMFR 1.7; 95% CI 1.3, 2.3) compared to those who did not (GMFR 0.9; 95% CI 0.7, 1.1) (p < .001). Daily melatonin for 14 days post-influenza vaccination significantly increased the cellular co-expression of IFN-γ + GzB; however, there were no other differences in the cellular or humoral responses. Future studies of the potential utility of melatonin for enhancing vaccine response with larger sample sizes may help elucidate candidate mechanisms for these limited effects, including any interactions with the circadian system.
1
In a randomized open-label trial of 108 adults, 14 days of daily 5 mg melatonin after influenza vaccination did not alter seroconversion rates or HAI geometric mean fold rises.
2
Larger studies are needed to clarify melatonin’s potential role in enhancing vaccine responses and its interactions with circadian biology.
3
Melatonin did not significantly change pre-to-post-vaccination interferon-gamma or granzyme B responses individually.
4
Melatonin significantly increased the fold rise of influenza vaccine-specific peripheral blood mononuclear cells co-expressing interferon-gamma and granzyme B (GMFR 1.7 vs 0.9; p < .001).
5
The intervention produced a limited cellular effect, with no other significant differences in measured humoral or cellular vaccine responses.

Adults receiving an influenza vaccine, with or without 14 days of post-vaccination melatonin

The effect of post-vaccination melatonin on influenza vaccine-specific humoral and cellular immune responses, particularly IFN-γ + granzyme B co-expression

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2024-11-13
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Authors
Rachel U. Lee
Nora L. Watson
Gena Glickman
Lindsey White
Sandra D. Isidean
Chad K. Porter
Monique Hollis-Perry
Samuel Walther
Santina Maiolatesi
Martha Sedegah
Harini Ganeshan
Jun Huang
David A. Boulifard
Daniel Ewing
Appavu K. Sundaram
E. Harrison
Katherine J Detizio
María Belmonte
Arnel Belmonte
Sandra Inoue
Alexandra Easterling
Elizabeth Cooper
Janine Danko
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