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Chronobiology International
The Journal of Biological and Medical Rhythm Research
Volume 36, 2019 - Issue 2
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Night shift work and osteoporosis: evidence and hypothesis

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Pages 171-180 | Received 17 Aug 2018, Accepted 22 Sep 2018, Published online: 12 Oct 2018

References

  • Akerstedt T. 2003. Shift work and disturbed sleep/wakefulness. Occup Med (Lond). 53:89–94.
  • Archer SN, Oster H. 2015. How sleep and wakefulness influence circadian rhythmicity: ffects of insufficient and mistimed sleep on the animal and human transcriptome. J Sleep Res. 24:476–93.
  • Banks S, Dinges DF. 2007. Behavioral and physiological consequences of sleep restriction. J Clin Sleep Med. 3:519–28.
  • Bracci M, Copertaro A, Manzella N, Staffolani S, Strafella E, Nocchi L, Barbaresi M, Copertaro B, Rapisarda V, Valentino M, et al. 2013. Influence of night-shift and napping at work on urinary melatonin, 17-beta-estradiol and clock gene expression in pre-menopausal nurses. J Biol Regul Homeost Agents. 27:267–74.
  • Bracci M, Manzella N, Copertaro A, Staffolani S, Strafella E, Barbaresi M, Copertaro B, Rapisarda V, Valentino M, Santarelli L. 2014. Rotating-shift nurses after a day off: peripheral clock gene expression, urinary melatonin, and serum 17-beta-estradiol levels. Scand J Work Environ Health. 40:295–304.
  • Burdelak W, Bukowska A, Krysicka J, Peplonska B. 2012. Night work and health status of nurses and midwives. cross-sectional study. Med Pr. 63:517–29.
  • Cunningham TD, Di Pace BS. 2015. Is self-reported sleep duration associated with osteoporosis? Data from a 4-year aggregated analysis from the national health and nutrition examination survey. J Am Geriatr Soc. 63:1401–06.
  • Elefteriou F, Campbell P, Ma Y. 2014. Control of bone remodeling by the peripheral sympathetic nervous system. Calcif Tissue Int. 94:140–51.
  • Everson CA, Folley AE, Toth JM. 2012. Chronically inadequate sleep results in abnormal bone formation and abnormal bone marrow in rats. Exp Biol Med (Maywood.). 237:1101–09.
  • Feskanich D, Hankinson SE, Schernhammer ES. 2009. Nightshift work and fracture risk: the Nurses’ Health Study. Osteoporos Int. 20:537–42.
  • Fu L, Lee CC. 2003. The circadian clock: pacemaker and tumour suppressor. Nat Rev Cancer. 3:350–61.
  • Gastel JA, Roseboom PH, Rinaldi PA, Weller JL, Klein DC. 1998. Melatonin production: proteasomal proteolysis in serotonin N-acetyltransferase regulation. Science. 279:1358–60.
  • Haus EL, Smolensky MH. 2013. Shift work and cancer risk: potential mechanistic roles of circadian disruption, light at night, and sleep deprivation. Sleep Med Rev. 17:273–84.
  • Hernlund E, Svedbom A, Ivergard M, Compston J, Cooper C, Stenmark J, McCloskey EV, Jonsson B, Kanis JA. 2013. Osteoporosis in the European Union: medical management, epidemiology and economic burden. A report prepared in collaboration with the International Osteoporosis Foundation (IOF) and the European Federation of Pharmaceutical Industry Associations (EFPIA). Arch Osteoporos. 8:136.
  • Hirai T. 2017. Circadian clock and bone biology. J Oral Biosci. 59:179–83
  • Hirai T, Tanaka K, Togari A. 2015. alpha1B-Adrenergic receptor signaling controls circadian expression of Tnfrsf11b by regulating clock genes in osteoblasts. Biol Open. 4:1400–09.
  • IARC Monographs on the Evaluation of Carcinogenic Risk to Humans. 2010. Painting, firefighting and shiftwork. Lyon (France): International Agency for Research on Cancer.
  • Itoh H, Weng Z, Saito H, Ogawa Y, Nakayama K, Hasegawa-Ohira M, Morimoto K, Maki S, Takahashi M. 2011. Association between night-shift work and serum 25-hydroxyvitamin D levels in Japanese male indoor workers: a cross-sectional study. Ind Health. 49:658–62.
  • Jeong H, Hong S, Heo Y, Chun H, Kim D, Park J, Kang MY. 2014. Vitamin D status and associated occupational factors in Korean wage workers: data from the 5th Korea national health and nutrition examination survey (KNHANES 2010–2012). Ann Occup Environ Med. 26:28.
  • Johnell O, Kanis JA. 2006. An estimate of the worldwide prevalence and disability associated with osteoporotic fractures. Osteoporos Int. 17:1726–33.
  • Joseph F, Chan BY, Durham BH, Ahmad AM, Vinjamuri S, Gallagher JA, Vora JP, Fraser WD. 2007. The circadian rhythm of osteoprotegerin and its association with parathyroid hormone secretion. J Clin Endocrinol Metab. 92:3230–38.
  • Kamdar BB, Tergas AI, Mateen FJ, Bhayani NH, Oh J. 2013. Night-shift work and risk of breast cancer: a systematic review and meta-analysis. Breast Cancer Res Treat. 138:291–301.
  • Kanis JA, McCloskey EV, Johansson H, Cooper C, Rizzoli R, Reginster JY. 2013. European guidance for the diagnosis and management of osteoporosis in postmenopausal women. Osteoporos Int. 24:23–57.
  • Kim BK, Choi YJ, Chung YS. 2013. Other than daytime working is associated with lower bone mineral density: the Korea National Health and Nutrition Examination Survey 2009, Calcif. Tissue Int. 93:495–501.
  • Kobayashi D, Takahashi O, Deshpande GA, Shimbo T, Fukui T. 2012. Association between osteoporosis and sleep duration in healthy middle-aged and elderly adults: a large-scale, cross-sectional study in Japan. Sleep Breath. 16:579–83.
  • Lehnert M, Beine A, Burek K, Putzke S, Schlosser S, Pallapies D, Bruning T, Behrens T, Rabstein S. 2018. Vitamin D supply in shift working nurses. Chronobiol Int. 35:724–29.
  • Liu J, Huang F, He HW. 2013. Melatonin effects on hard tissues: bone and tooth. Int J Mol Sci. 14:10063–74.
  • Manolagas SC, Kousteni S, Jilka RL. 2002. Sex steroids and bone. Recent Prog Horm Res. 57:385–409.
  • Maria S, Witt-Enderby PA. 2014. Melatonin effects on bone: potential use for the prevention and treatment for osteopenia, osteoporosis, and periodontal disease and for use in bone-grafting procedures. J Pineal Res. 56:115–25.
  • Marie HA, Helene GA, Hansen J. 2006. Diurnal urinary 6-sulfatoxymelatonin levels among healthy Danish nurses during work and leisure time. Chronobiol Int. 23:1203–15.
  • Meerlo P, Sgoifo A, Suchecki D. 2008. Restricted and disrupted sleep: effects on autonomic function, neuroendocrine stress systems and stress responsivity. Sleep Med Rev. 12:197–210.
  • Mirick DK, Bhatti P, Chen C, Nordt F, Stanczyk FZ, Davis S. 2013. Night shift work and levels of 6-sulfatoxymelatonin and cortisol in men. Cancer Epidemiol Biomarkers Prev. 22:1079–87.
  • Mirza F, Canalis E. 2015. Management of endocrine disease: secondary osteoporosis: pathophysiology and management. Eur J Endocrinol. 173:R131–R151.
  • Nakade O, Koyama H, Ariji H, Yajima A, Kaku T. 1999. Melatonin stimulates proliferation and type I collagen synthesis in human bone cells in vitro. J Pineal Res. 27:106–10.
  • NIH Consensus Development Panel on Osteoporosis Prevention. 2001. Osteoporosis prevention, diagnosis, and therapy. JAMA. 285:785–95.
  • Ostrowska Z, Kos-Kudla B, Marek B, Kajdaniuk D. 2003. Influence of lighting conditions on daily rhythm of bone metabolism in rats and possible involvement of melatonin and other hormones in this process. Endocr Regul. 37:163–74.
  • Pandi-Perumal SR, Srinivasan V, Maestroni GJ, Cardinali DP, Poeggeler B, Hardeland R. 2006. Melatonin: nature’s most versatile biological signal? FEBS J. 273:2813–38.
  • Papantoniou K, Pozo OJ, Espinosa A, Marcos J, Castano-Vinyals G, Basagana X, Ribas FC, Mirabent J, Martin J, Carenys G, et al. 2014. Circadian variation of melatonin, light exposure, and diurnal preference in day and night shift workers of both sexes. Cancer Epidemiol Biomarkers Prev. 23:1176–86.
  • Peplonska B, Bukowska A, Gromadzinska J, Sobala W, Reszka E, Lie JA, Kjuus H, Wasowicz W. 2012. Night shift work characteristics and 6-sulfatoxymelatonin (MT6s) in rotating night shift nurses and midwives. Occup Environ Med. 69:339–46.
  • Podfigurna-Stopa A, Czyzyk A, Grymowicz M, Smolarczyk R, Katulski K, Czajkowski K, Meczekalski B. 2016. Premature ovarian insufficiency: the context of long-term effects. J Endocrinol Invest. 39:983–90.
  • Quevedo I, Zuniga AM. 2010. Low bone mineral density in rotating-shift workers. J Clin Densitom. 13:467–69.
  • Radio NM, Doctor JS, Witt-Enderby PA. 2006. Melatonin enhances alkaline phosphatase activity in differentiating human adult mesenchymal stem cells grown in osteogenic medium via MT2 melatonin receptors and the MEK/ERK (1/2) signaling cascade. J Pineal Res. 40:332–42.
  • Recker R, Lappe J, Davies K, Heaney R. 2000. Characterization of perimenopausal bone loss: a prospective study. J Bone Miner Res. 15:1965–73.
  • Reid IR. 2017. Vitamin D effect on bone mineral density and fractures. Endocrinol Metab Clin North Am. 46:935–45.
  • Reiter RJ. 1998. Melatonin and human reproduction. Ann Med. 30:103–08.
  • Reszka E, Peplonska B, Wieczorek E, Sobala W, Bukowska A, Gromadzinska J, Lie JA, Kjuus H, Wasowicz W. 2013. Circadian gene expression in peripheral blood leukocytes of rotating night shift nurses. Scand J Work Environ Health. 39:187–94.
  • Romano A, Vigna L, Belluigi V, Conti DM, Barberi CE, Tomaino L, Consonni D, Riboldi L, Tirelli AS, Andersen LL. 2015. Shift work and serum 25-OH vitamin D status among factory workers in Northern Italy: cross-sectional study. Chronobiol Int. 32:842–47.
  • Sack RL, Lewy AJ, Erb DL, Vollmer WM, Singer CM. 1986. Human melatonin production decreases with age. J Pineal Res. 3:379–88.
  • Samsa WE, Vasanji A, Midura RJ, Kondratov RV. 2016. Deficiency of circadian clock protein BMAL1 in mice results in a low bone mass phenotype. Bone. 84:194–203.
  • Santhanam P, Khthir R, Dial L, Driscoll HK, Gress TW. 2016. Femoral neck bone mineral density in persons over 50 years performing shiftwork: an epidemiological study. J Occup Environ Med. 58:e63–e65.
  • Sasaki N, Fujiwara S, Yamashita H, Ozono R, Teramen K, Kihara Y. 2016. Impact of sleep on osteoporosis: sleep quality is associated with bone stiffness index. Sleep Med. 25:73–77.
  • Schernhammer ES, Rosner B, Willett WC, Laden F, Colditz GA, Hankinson SE. 2004. Epidemiology of urinary melatonin in women and its relation to other hormones and night work. Cancer Epidemiol Biomarkers Prev. 13:936–43.
  • Schnatz PF. 2011. The 2010 North American Menopause Society position statement: updates on screening, prevention and management of postmenopausal osteoporosis. Conn Med. 75:485–87.
  • Seeman E, Hopper JL, Bach LA, Cooper ME, Parkinson E, McKay J, Jerums G. 1989. Reduced bone mass in daughters of women with osteoporosis. N Engl J Med. 320:554–58.
  • Seeman E, Tsalamandris C, Formica C, Hopper JL, McKay J. 1994. Reduced femoral neck bone density in the daughters of women with hip fractures: the role of low peak bone density in the pathogenesis of osteoporosis. J Bone Miner Res. 9:739–43.
  • Shoback D, Sellmeyer D, Bikle DD. 2007. Metabolic bone disease. In: Gardner DG, Shoback D, editors. Greenspan’s basic & clinical endocrinology. 8th ed.USA: The McGraw-Hill Companies. 300–368.
  • Soroko SB, Barrett-Connor E, Edelstein SL, Kritz-Silverstein D. 1994. Family history of osteoporosis and bone mineral density at the axial skeleton: the rancho bernardo study. J Bone Miner Res. 9:761–69.
  • Swanson CM, Kohrt WM, Buxton OM, Everson CA, Wright KP Jr., Orwoll ES, Shea SA. 2017a. The importance of the circadian system & sleep for bone health. Metabolism. 84:28–43.
  • Swanson CM, Shea SA, Wolfe P, Cain SW, Munch M, Vujovic N, Czeisler CA, Buxton OM, Orwoll ES. 2017b. Bone turnover markers after sleep restriction and circadian disruption: a mechanism for sleep-related bone loss in humans. J Clin Endocrinol Metab. 102:3722–30.
  • Tian Y, Shen L, Wu J, Xu G, Yang S, Song L, Zhang Y, Mandiwa C, Yang H, Liang Y, et al. 2015. Sleep duration and timing in relation to osteoporosis in an elderly Chinese population: a cross-sectional analysis in the Dongfeng-Tongji cohort study. Osteoporos Int. 26:2641–48.
  • Wang K, Wu Y, Yang Y, Chen J, Zhang D, Hu Y, Liu Z, Xu J, Shen Q, Zhang N, et al. 2015. The associations of bedtime, nocturnal, and daytime sleep duration with bone mineral density in pre- and post-menopausal women. Endocrine. 49:538–48.
  • Ward M, Berry DJ, Power C, Hypponen E. 2011. Working patterns and vitamin D status in mid-life: a cross-sectional study of the 1958 British birth cohort. Occup Environ Med. 68:902–07.
  • Weaver CM, Gordon CM, Janz KF, Kalkwarf HJ, Lappe JM, Lewis R, O’Karma M, Wallace TC, Zemel BS. 2016. The National Osteoporosis Foundation’s position statement on peak bone mass development and lifestyle factors: a systematic review and implementation recommendations. Osteoporos Int. 27:1281–386.
  • WHO, 2004. WHO technical meeting on sleep and health. World Health Organization Regional Office for Europe European Centre for Environment and Health, Bonn Office, Germany. 1–183.
  • Witt-Enderby PA, Slater JP, Johnson NA, Bondi CD, Dodda BR, Kotlarczyk MP, Clafshenkel WP, Sethi S, Higginbotham S, Rutkowski JL, et al. 2012. Effects on bone by the light/dark cycle and chronic treatment with melatonin and/or hormone replacement therapy in intact female mice. J Pineal Res. 53:374–84.
  • Zvonic S, Ptitsyn AA, Kilroy G, Wu X, Conrad SA, Scott LK, Guilak F, Pelled G, Gazit D, Gimble JM. 2007. Circadian oscillation of gene expression in murine calvarial bone. J Bone Miner Res. 22:357–65.

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