Serotonin variations and sleep disorders among shift workers. A cross-sectional study

Sleep disorders are prevalent occupational health problems among shift workers, especially healthcare workers with long shifts. Serotonin is a neurotransmitter related to circadian variations accompanied by shift work. A cross-sectional study was performed on 73 nurses at a tertiary hospital in Cairo, Egypt, to assess sleep quality among shift work nurses (SWNs), to determine blood serotonin level, and its relation to shift work and sleep quality. A demographic and occupational history questionnaire, Pittsburgh Sleep Quality Index (PSQI) questionnaire, and measurement of blood serotonin were carried out to the studied group. The data were analyzed using SPSS 25, and descriptive statistics, unpaired t-test, ANOVA, Kruskal–Wallis Test, Chi-square, Spearman correlation, and multivariate regression analysis were utilized. The results showed that the mean PSQI global score was significantly higher among SWNs than non-shift work nurses (NSWNs) and was the highest (10.32 ± 3.56 and 10.22 ± 2.4, respectively) among rotatory and fixed night shift nurses. Blood serotonin showed highly significant differences between SWNs over NSWNs (p = 0.001), and mostly reduced among rotatory and fixed night shift nurses (66.7% and 65%, respectively). Moreover, there were highly significant differences in serotonin levels between poor and good sleep quality nurses (p < 0.001), and most of the poor sleep quality nurses (62.7%) had low serotonin levels. Abnormal serotonin level (odds = 246.5) and working years (odds = 1.2) were statistically significant predictors of poor sleep quality. In conclusion, SWNs, especially rotating and night shift nurses, suffer from poor sleep quality associated with abnormal levels of blood serotonin.

Afonso, P, Fonseca, M, Pires, JF (2017) Impact of working hours on sleep and mental health. Occupational Medicine 67(5): 377–382.
Google Scholar | Crossref | Medline Akbari, V, Hajian, A, Mirhashemi, MS (2016) Evaluating of sleep quality in shift-work nurses. Journal of Sleep Disorders and Therapy 5: 225.
Google Scholar Akerstedt, T (2003) Shift work and disturbed sleep/wakefulness. Occupational Medicine 53: 89–94.
Google Scholar | Crossref | Medline | ISI Akerstedt, T, Wright, KP (2009) Sleep loss and fatigue in shift work and shift work disorder. Sleep Medicine Clinics 4: 257–271.
Google Scholar | Crossref | Medline Alshahrani, SM, Baqays, AA, Alenazi, AA, et al. (2017) Impact of shift work on sleep and daytime performance among health care professionals. Saudi Medical Journal 38(8): 846–851.
Google Scholar | Crossref | Medline Andres, AH, Rao, ML, Ostrowitzki, S, et al. (1993) Human brain cortex and platelet serotonin2 receptor binding properties and their regulation by endogenous serotonin. Life Sciences 52: 313–321.
Google Scholar | Crossref | Medline | ISI Buysse, DJ, Reynolds, CF, Monk, TH, et al. (1989) The Pittsburgh sleep quality index: a new instrument for psychiatric practice and research. Psychiatry Research 28: 193–213.
Google Scholar | Crossref | Medline | ISI Caruso, CC (2014) Negative impacts of shiftwork and long work hours. Rehabilitation Nursing 39: 16–25.
Google Scholar | Crossref | Medline | ISI Kazemi, R, Haidarimoghadam, R, Motamedzadeh, M, et al. (2016) Effects of shift work on cognitive performance, sleep quality, and sleepiness among petrochemical control room operators. Journal of Circadian Rhythms 14: 1. DOI: 10.5334/jcr.134.
Google Scholar | Crossref | Medline Klerman, EB (2005) Clinical aspects of human circadian rhythms. Journal of Biological Rhythms 20: 375–386.
Google Scholar | SAGE Journals | ISI Lajoie, P, Aronson, KJ, Day, A, et al. (2015) A cross-sectional study of shift work, sleep quality and cardiometabolic risk in female hospital employees. BMJ Open 5(3): e007327. DOI: 10.1136/bmjopen-2014-007327.
Google Scholar | Crossref | Medline Lockley, SW, Barger, LK, Ayas, NT, et al. (2007) Effects of health care provider work hours and sleep deprivation on safety and performance. The Joint Commission Journal on Quality and Patient Safety 33(11): 7–18.
Google Scholar | Crossref | Medline Lucki, I (1998) The spectrum of behaviors influenced by serotonin. Biological Psychiatry 44: 151–162.
Google Scholar | Crossref | Medline | ISI Mateos, SS, Sánchez, CL, Paredes, SD, et al. (2009) Circadian levels of serotonin in plasma and brain after oral administration of tryptophan in rats. Basic & Clinical Pharmacology & Toxicology 104(1): 52–59.
Google Scholar | Crossref | Medline Ressler, KJ, Nemeroff, CB (2000) Role of serotonergic and noradrenergic systems in the pathophysiology of depression and anxiety disorders. Depression and Anxiety 12(1): 2–19.
Google Scholar | Crossref | Medline | ISI Roth, T (2012) Shift work disorder: overview and diagnosis. The Journal of Clinical Psychiatry 73(3): e09.
Google Scholar | Crossref | Medline Schernhammer, ES, Kroenke, CH, Laden, F, et al. (2006) Night work and risk of breast cancer. Epidemiology 17(1): 108–111.
Google Scholar | Crossref | Medline Shao, M-F, Chou, Y-C, Yeh, M-Y, et al. (2010) Sleep quality and quality of life in female shift-working nurses. Journal of Advanced Nursing 66(7): 1565–1572.
Google Scholar | Crossref | Medline | ISI Sookoian, S, Gemma, C, Gianotti, TF, et al. (2007) Serotonin and serotonin transporter gene variant in rotating shift workers. Sleep 30(8): 1049–1053.
Google Scholar | Crossref | Medline Tür, FÇ, Toker, I, Toker, İ, et al. (2015) Assessment of the Pittsburgh sleep quality index among physicians specialty who work night shifts. Emergency Medicine - Open Journal 1(1): 5–11.
Google Scholar | Crossref Ursin, R (2002) Serotonin and sleep. Sleep Medicine Reviews 6: 55–67.
Google Scholar | Crossref | Medline | ISI Vashadze, ShV (2007) Insomnia, serotonin, and depression. Georgian Medical News 150: 22–24.
Google Scholar Wickwire, EM, Geiger-Brown, J, Scharf, SM, et al. (2017) Shift work and shift work sleep disorder: clinical and organizational perspectives. Chest 151(5): 1156–1172.
Google Scholar | Crossref | Medline

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