Cite

1. Beilby J. Definition of Metabolic Syndrome: Report of the National Heart, Lung, and Blood Institute/American Heart Association Conference on Scientific Issues Related to Definition. Circulation. 2006;109:433-438.Search in Google Scholar

2. Buchvold HV, Pallesen S, Oyane NM, Bjorvatn B. Associations between night work and BMI, alcohol, smoking, caffeine and exercise--a cross-sectional study. BMC public health. 2015;15:1112.10.1186/s12889-015-2470-2464267726558686Search in Google Scholar

3. Wang XS, Travis RC, Reeves G, Green J, Allen NE, Key TJ, Roddam AV, Beral V. Characteristics of the Million Women Study participants who have and have not worked at night. Scand J Work Environ Health. 2012;38:590–599.10.5271/sjweh.331322772745Search in Google Scholar

4. Ramin C, Devore EE, Wang W, Pierre-Paul J, Wegrzyn LR, Schernhammer ES. Night shift work at specific age ranges and chronic disease risk factors. Occup Environ Med. 2015;72(2):100–107.10.1136/oemed-2014-102292428964125261528Search in Google Scholar

5. van Amelsvoort LGPM, Jansen NWH, Kant I. Smoking among shift workers: more than a confounding factor. Chronobiol Int. 2006;23(6):1105–1113.10.1080/0742052060108953917190698Search in Google Scholar

6. van Drongelen A, Boot CRL, Merkus SL, Smid T, van der Beek AJ. The effects of shift work on body weight change − a systematic review of longitudinal studies. Scand J Work Environ Health. 2011;37(4): 263-275.10.5271/sjweh.314321243319Search in Google Scholar

7. Kim M-J, Son K-H, Park H-Y, Choi D-J, Yoon C-H, Lee H-Y, Cho E-Y, Cho M-C. Association between shift work and obesity among female nurses: Korean Nurses’ Survey. BMC Public Health. 2013;13:1204. doi:10.1186/1471-2458-13-1204.10.1186/1471-2458-13-1204387817724354395Open DOISearch in Google Scholar

8. Griep RH, Bastos LS, Fonseca Mde J, Silva-Costa A, Portela LF, Toivanen S, Rotenberg L. Years worked at night and body mass index among registered nurses from eighteen public hospitals in Rio de Janeiro, Brazil. BMC Health Serv Res. 2014;14:603. doi: 10.1186/s12913-014-0603-4.10.1186/s12913-014-0603-4426433725432798Search in Google Scholar

9. Peplonska B, Bukowska A, Sobala W. Association of Rotating Night Shift Work with BMI and Abdominal Obesity among Nurses and Midwives. PLoS ONE. 2015;10(7):e0133761. doi:10.1371/journal.pone.0133761.10.1371/journal.pone.0133761451141726196859Search in Google Scholar

10. Sun M, Feng W, Wang F, Li P, Li Z, Li M, Tse G, Vlaanderen J, Vermeulen R, Tse LA. Meta-analysis on shift work and risks of specific obesity types. Obes Rev. 2018;19(1):28-40.10.1111/obr.1262128975706Search in Google Scholar

11. Gadallah M, Hakim SA, Mohsen A, Eldin WS. Association of rotating night shift with lipid profile among nurses in an Egyptian tertiary university hospital. East Mediter Health J. 2017;23(4):295-302.10.26719/2017.23.4.29528634980Search in Google Scholar

12. Ghiasvand M, Heshmat R, Golpira R, Haghpanah V, Soleimani A, Shoushtarizadeh P, Tavangar SM, Larijani B. Shift working and risk of lipid disorders: A cross-sectional study. Lipids Health Dis. 2006;5:9. doi:10.1186/1476-511X-5-9.10.1186/1476-511X-5-9152673016606444Open DOISearch in Google Scholar

13. Karlsson B, Knutsson A, Lindahl B. Is there an association between shift work and having a metabolic syndrome? Results from a population based study of 27 485 people. Occup Environ Med. 2001;58(11):747–75210.1136/oem.58.11.747174007111600731Search in Google Scholar

14. Charles LE, Gu JK, Tinney-Zara CA, Fekedulegn D, Ma CC, Baughman P, Hartley TA, Andrew ME, Violanti JM, Burchfiel CM. Separate and Joint Associations of Shift Work and Sleep Quality with Lipids. Saf Health Work. 2016;7(2):111-119.10.1016/j.shaw.2015.11.007490984527340597Search in Google Scholar

15. Dochi M, Sakata K, Oishi M, Tanaka K, Kobayashi E, Suwazono Y. Relationship between shift work and hypercholesterolemia in Japan. Scand J Work Environ Health. 2008;34(1):33-39.10.5271/sjweh.118918427696Search in Google Scholar

16. Oyama I, Kubo T, Fujino Y, Kadowaki K, Kunimoto M, Shirane K, Tabata H, Sabanai K, Nakamura T, Matsuda S. Retrospective cohort study of the risk of impaired glucose tolerance among shift workers. Scand J Work Environ Health. 2012;38(4):337-342.10.5271/sjweh.329722508500Search in Google Scholar

17. Karlsson B, Alfredsson L, Knutsson A, Andersson E, Torén K. Total mortality and cause-specific mortality of Swedish shift- and dayworkers in the pulp and paper industry in 1952–2001. Scand J Work Environ Health. 2005;31(1):30-3510.5271/sjweh.84515751616Search in Google Scholar

18. Pan A, Schernhammer ES, Sun Q, Hu FB. Rotating Night Shift Work and Risk of Type 2 Diabetes: Two Prospective Cohort Studies in Women. PLoS Med. 2011; 8(12): e1001141. doi:10.1371/journal.pmed.1001141.10.1371/journal.pmed.1001141323222022162955Search in Google Scholar

19. Manodpitipong A, Saetung S, Nimitphong H, Siwasaranond N, Wongphan T, Sornsiriwong C, Luckanajantachote P, Mangjit P, Keesukphan P, Crowley SJ, Hood MM, Reutrakul S. Night-shift work is associated with poorer glycaemic control in patients with type 2 diabetes. J Sleep Res. 2017;26(6): 764-772.10.1111/jsr.1255428548389Search in Google Scholar

20. Thomas C, Power C. (2010). Shift work and risk factors for cardiovascular disease: a study at age 45 years in the 1958 British birth cohort. Eur J Epidemiol. 2010;25:305-314.Search in Google Scholar

21. de Gaudemaris R, Levant A, Ehlinger V, Hérin F, Lepage B, Soulat JM, Sobaszek A, Kelly-Irving M, Lang T. Blood pressure and working conditions in hospital nurses and nursing assistants. The ORSOSA study. Arch Cardiovasc Dis. 2011;104(2):97-103.10.1016/j.acvd.2010.12.00121402344Search in Google Scholar

22. Vetter C, Devore EE, Wegrzyn LR, Massa J, Speizer FE, Kawachi I, Rosner B, Stampfer MJ, Schernhammer ES. Association Between Rotating Night Shift Work and Risk of Coronary Heart Disease Among Women. JAMA. 2016; 315(16):1726-1734. PMC5102147.10.1001/jama.2016.4454510214727115377Search in Google Scholar

23. Suwazono Y, Dochi M, Sakata K, Okubo Y, Oishi M, Tanaka K, Kobayashi E, Nogawa K. Shift work is a risk factor for increased blood pressure in Japanese men: a 14-year historical cohort study. Hypertension. 2008;52(3):581-586.10.1161/HYPERTENSIONAHA.108.11455318625889Search in Google Scholar

24. Silva-Costa A, Guimarães J, Chor D, de Jesus Mendes da Fonseca M, Bensenor I, Santos I, Barreto S, Griep RH. Time of exposure to night work and carotid atherosclerosis: a structural equation modeling approach using baseline data from ELSA-Brasil. Int Arch Occup Environ Health. 2018;91(5):591-600.10.1007/s00420-018-1305-829611041Search in Google Scholar

25. Yeom JH, Sim CS, Lee J, Yun SH, Park SJ, Yoo CI, Sung JH. Effect of shift work on hypertension: cross sectional study. Ann Occup Environ Med.2017; 29:11.10.1186/s40557-017-0166-z538725828400961Search in Google Scholar

26. Manohar S, Thongprayoon C, Cheungpasitporn W, Mao MA, Herrmann SM. Associations of rotational shift work and night shift status with hypertension: a systematic review and meta-analysis. J Hypertens. 2017; 35(10):1929-1937.10.1097/HJH.000000000000144228650914Search in Google Scholar

27. Pietroiusti A, Neri A, Somma G, Coppeta L, Iavicoli I, Bergamaschi A, Magrini A. Incidence of metabolic syndrome among night-shift healthcare workers. Occup Environ Med. 2010;67(1):54-57.10.1136/oem.2009.04679719737731Search in Google Scholar

28. Sawaengdee K, Tangcharoensathien V, Theerawit T, Thungjaroenkul P, Thinkhamrop W, Prathumkam P, Chaichaya N, Thinkhamrop K, Tawarungruang C, Thinkhamro B. Thai nurse cohort study: cohort profiles and key findings. BMC Nurs. 2016;15: 10.10.1186/s12912-016-0131-0475796926893589Search in Google Scholar

29. Hundrup YA, Simonsen MK, Jørgensen T, Obel EB. Cohort Profile: The Danish nurse cohort. Int J Epidemiol. 2012;41(5):1241–1247.10.1093/ije/dyr04221421694Search in Google Scholar

30. Mazurenko O, Gupte G, Shan G. Analyzing U.S. nurse turnover: Are nurses leaving their jobs or the profession itself? J Hosp Admin. 2015;4(4):48-56.10.5430/jha.v4n4p48Search in Google Scholar

31. Hulsegge G, Picavet HSJ, van der Beek AJ, Verschuren WMM, Twisk JW, Proper KI. Shift work, chronotype and the risk of cardiometabolic risk factors, Eur J Public Health. 2018; doi: 10.1093/eurpub/cky092.10.1093/eurpub/cky09229796606Open DOISearch in Google Scholar

32. Vetter C, Dashti HS, Lane JM, Anderson SG, Schernhammer ES, Rutter MK, Saxena R, Scheer FAJL. Night Shift Work, Genetic Risk, and Type 2 Diabetes in the UK Biobank. Diabetes Care. 2018;41(4):762-769.10.2337/dc17-1933586083629440150Search in Google Scholar

33. Rotter M, Brandmaier S, Covic M, Burek K, Hertel J, Troll M, Bader E, Adam J, Prehn C, Rathkolb B, Hrabe de Angelis, M, Grabe HJ Daniel H, Kantermann T, Harth V, Illig T, Pallapies D, Behrens T, Brüning T, Adamski J, Lickert H, Rabstein S, Wang-Sattler R. Night Shift Work Affects Urine Metabolite Profiles of Nurses with Early Chronotype. Metabolites. 2018; 8(3):45.10.3390/metabo8030045616124530134533Search in Google Scholar

34. Mohawk JA, Green CB, Takahashi JS. Central and peripheral circadian clocks in mammals. Ann Rev Neurosci. 2012;35:445-462.10.1146/annurev-neuro-060909-153128371058222483041Search in Google Scholar

35. Carrasco-Benso MP, Rivero-Gutierrez B, Lopez-Minguez J, Anzola A, Diez-Noguera A, Madrid JA, Lujan JA, Martínez-Augustin O, Scheer FA, Garaulet M. Human adipose tissue expresses intrinsic circadian rhythm in insulin sensitivity. FASEB J. 2016;30(9):3117-3123.10.1096/fj.201600269RR500151327256623Search in Google Scholar

36. Archer SN, Laing EE, Möller-Levet CS, van der Veen DR, Bucca G, Lazar AS, Santhi N, Slak A, Kabiljo R, von Schantz M, Smith CP, Dijk DJ. Circadian desynchrony and the human transcriptome. Proc Nat Acad Sci. 2014; 111(6):E682-E691.10.1073/pnas.1316335111392608324449876Search in Google Scholar

37. Brown SA. Circadian Metabolism: From Mechanisms to Metabolomics and Medicine. Trends in Endocrinol & Metab. 2016;27(6):415-452.10.1016/j.tem.2016.03.01527113082Search in Google Scholar

38. Garaulet M, Ordovás JM, Madrid JA. The chronobiology, etiology and pathophysiology of obesity. Int J Obes. 2010;34:1667–83.10.1038/ijo.2010.118442891220567242Search in Google Scholar

39. Jacobi D, Liu S, Burkewitz K, Kory N, Knudsen NH, Alexander RK, Unluturk U, Li X, Kong X, Hyde AL, Gangl MR, Mair WB, Lee CH. Hepatic Bmal1 regulates rhythmic mitochondrial dynamics and promotes metabolic fitness. Cell Metab. 2015;22(4):709-720.10.1016/j.cmet.2015.08.006459829426365180Search in Google Scholar

40. McCarthy JJ, Andrews JL, McDearmon EL, Campbell KS, Barber BK, Miller BH, Walker JR, Hogenesch JB, Takahashi JS, Esser KA. Identification of the circadian transcriptome in adult mouse skeletal muscle. Physiol Genomics. 2007;31(1):86–95.10.1152/physiolgenomics.00066.2007608086017550994Search in Google Scholar

41. Lee J, Kim M-S, Li R, Liu VY, Fu L, Moore DD, Ma K, Yechoor VK. Loss of Bmal1 leads to uncoupling and impaired glucose-stimulated insulin secretion in β-cells. Islets. 2011;3(6): 381–388.10.4161/isl.3.6.18157332951922045262Search in Google Scholar

42. Langin D. The role of uncoupling protein 2 in the development of type 2 diabetes. Drugs Today (Barc). 2003;39(4):287-295.10.1358/dot.2003.39.4.73796012743644Search in Google Scholar

43. Dallmann R, Viola AU, Tarokh L, Cajochen C, Brown SA. The human circadian metabolome. Proc. Natl. Acad. Sci. USA. 2012;109(7):2625–2629.10.1073/pnas.1114410109328930222308371Search in Google Scholar

44. Chua EC-P, Shui G, Lee IT-G, Lau P, Tan LC, Yeo SC, Lam BD, Bulchand S, Summers SA, Puvanendran K, Rozen SG, Wenk MR, Gooley JJ. Extensive diversity in circadian regulation of plasma lipids and evidence for different circadian metabolic phenotypes in humans. Proc Natl Acad Sci USA. 2013; 110(35):14468-1447.10.1073/pnas.1222647110376163323946426Search in Google Scholar

45. Mattson MP, Allison DB, Fontana L, Harvie M, Longo VD, Malaisse WJ, Mosley M, Notterpek L, Ravussin E, Scheer FA, Seyfried TN, Varady KA, Panda S. Meal frequency and timing in health and disease. Proc Natl Acad Sci USA. 2014;111(47):16647–16653.10.1073/pnas.1413965111425014825404320Search in Google Scholar

46. Saad A, Dalla Man C, Nandy DK, Levine JA, Bharucha AE, Rizza RA, Basu R, Carter RE, Cobelli C, Kudva YC, Basu A. Diurnal Pattern to Insulin Secretion and Insulin Action in Healthy Individuals. Diabetes. 2012;61(11):2691-2700. doi:10.2337/db11-1478.10.2337/db11-1478347854822751690Open DOISearch in Google Scholar

47. Morgan L, Arendt J, Owens D, Folkard S, Hampton S, Deacon S, English J, Ribeiro D, Taylor K. Effects of the endogenous clock and sleep time on melatonin, insulin, glucose and lipid metabolism. J. Endocrinol. 1998; 157(3):443–451.10.1677/joe.0.15704439691977Search in Google Scholar

48. Wefers J, van Moorsel D, Hansen J, Connell NJ, Havekes B, Hoeks J, van Marken Lichtenbelt WD, Duez H, Phielix E, Kalsbeek A, Boekschoten MV, Hooiveld GJ, Hesselink MKC, Kersten S, Staels B, Scheer FAJL, Schrauwen P. Circadian misalignment induces fatty acid metabolism gene profiles and compromises insulin sensitivity in human skeletal muscle. Proc Natl Acad Sci USA. 2018;115(30):7789-7794.10.1073/pnas.1722295115606502129987027Search in Google Scholar

49. Bracci M, Ciarapica V, Copertaro A, Barbaresi M, Manzella N, Tomasetti M, Gaetani S, Monaco F, Amati M, Valentino M, Rapisarda V, Santarelli L. Peripheral Skin Temperature and Circadian Biological Clock in Shift Nurses after a Day off. Int J Molec Sci.2016;17(5):623.10.3390/ijms17050623488144927128899Search in Google Scholar

50. Stevens RG, Zhu Y. Electric light, particularly at night, disrupts human circadian rhythmicity: is that a problem? Philos Trans R Soc B Biol Sci. 2015;370(1667) pii: 20140120.10.1098/rstb.2014.0120437536125780233Search in Google Scholar

51. Sharma A, Laurenti MC, Man CD, Varghese RT, Cobelli C, Rizza RA, Matveyenko A, Vella A. Glucose metabolism during rotational shift-work in health-care workers. Diabetologia. 2017;60(8):1483-1490.10.1007/s00125-017-4317-0586064328551698Search in Google Scholar

52. Kim S-W, Jang E-C, Kwon S-C, Han W, Kang MS, Nam YH, Lee YJ. Night shift work and inflammatory markers in male workers aged 20–39 in a display manufacturing company. Ann Occup Environ Med. 2016;28:48. doi:10.1186/s40557-016-0135-y.10.1186/s40557-016-0135-y502898527660715Open DOISearch in Google Scholar

53. Morris CJ, Purvis TE, Hu K, Scheer FAJL. Circadian misalignment increases cardiovascular disease risk factors in humans. Proc Nat Acad Sci USA. 2016; 113(10):E1402-E1411.10.1073/pnas.1516953113Search in Google Scholar

54. Gildner TE, Liebert MA, Kowal P, Chatterji S, Josh Snodgrass J. Sleep Duration, Sleep Quality, and Obesity Risk Among Older Adults From Six Middle-Income Countries: Findings from the Study on global ageing and adult health (SAGE). Am J Hum Biol. 2014;26(6):803-812.10.1002/ajhb.22603Search in Google Scholar

55. Song Q, Liu X, Zhou W, Wang X, Wu S. Changes in sleep duration and risk of metabolic syndrome: the Kailuan prospective study. Sci Rep. 2016;6:36861 doi: 10.1038/srep3686110.1038/srep36861Search in Google Scholar

56. Vorona RD, Winn MP, Babineau TW, Eng BP, Feldman HR, Ware JC. Overweight and obese patients in a primary care population report less sleep than patients with a normal body mass index. Arch Intern Med. 2005;165(1): 25–30.10.1001/archinte.165.1.25Search in Google Scholar

57. Gangwisch JE, Malaspina D, Boden-Albala B, Heymsfield SB. Inadequate sleep as a risk factor for obesity: analyses of the NHANES I. Sleep. 2005;28(10):1289–1296.10.1093/sleep/28.10.1289Search in Google Scholar

58. Spiegel K, Leproult R, Van Cauter E. Impact of sleep debt on metabolic and endocrine function. Lancet. 1999;354(9188):1435–1439.10.1016/S0140-6736(99)01376-8Search in Google Scholar

59. Buxton OM, Pavlova M, Reid EW, Wang W, Simonson DC, Adler GK. Sleep Restriction for 1 Week Reduces Insulin Sensitivity in Healthy Men. Diabetes. 2010;59(9):2126-2133.10.2337/db09-0699292793320585000Search in Google Scholar

60. Liu A, Kushida CA, Reaven GM. Habitual Shortened Sleep and Insulin Resistance: an Independent Relationship in Obese Individuals. Metabolism. 2013;62(11):10.10.1016/j.metabol.2013.06.003380933623849514Search in Google Scholar

61. Leproult R, Holmbäck U, Van Cauter E. Circadian Misalignment Augments Markers of Insulin Resistance and Inflammation, Independently of Sleep Loss. Diabetes. 2014;63(6):1860-1869.10.2337/db13-1546403010724458353Search in Google Scholar

62. Lajoie P, Aronson KJ, Day A, Tranmer J. A cross-sectional study of shift work, sleep quality and cardiometabolic risk in female hospital employees. BMJ Open. 2015;5:e007327.10.1136/bmjopen-2014-007327436058225757950Search in Google Scholar

63. Wehrens SMT, Christou S, Isherwood C, Middleton B, Gibbs MA, Archer SN, Skene DJ, Johnston JD. Meal Timing Regulates the Human Circadian System. Curr Biol. 2017;27(12):1768-1775.10.1016/j.cub.2017.04.059548323328578930Search in Google Scholar

eISSN:
1841-4036
Language:
English
Publication timeframe:
4 times per year
Journal Subjects:
Medicine, Clinical Medicine, other