Skip to main content
Erschienen in: Diabetologia 8/2017

27.05.2017 | Article

Glucose metabolism during rotational shift-work in healthcare workers

verfasst von: Anu Sharma, Marcello C. Laurenti, Chiara Dalla Man, Ron T. Varghese, Claudio Cobelli, Robert A. Rizza, Aleksey Matveyenko, Adrian Vella

Erschienen in: Diabetologia | Ausgabe 8/2017

Einloggen, um Zugang zu erhalten

Abstract

Aims/hypothesis

Shift-work is associated with circadian rhythm disruption and an increased risk of obesity and type 2 diabetes. We sought to determine the effect of rotational shift-work on glucose metabolism in humans.

Methods

We studied 12 otherwise healthy nurses performing rotational shift-work using a randomised crossover study design. On each occasion, participants underwent an isotope-labelled mixed meal test during a simulated day shift and a simulated night shift, enabling simultaneous measurement of glucose flux and beta cell function using the oral minimal model. We sought to determine differences in fasting and postprandial glucose metabolism during the day shift vs the night shift.

Results

Postprandial glycaemic excursion was higher during the night shift (381±33 vs 580±48 mmol/l per 5 h, p<0.01). The time to peak insulin and C-peptide and nadir glucagon suppression in response to meal ingestion was also delayed during the night shift. While insulin action did not differ between study days, the beta cell responsivity to glucose (59±5 vs 44±4 × 10−9 min−1; p<0.001) and disposition index were decreased during the night shift.

Conclusions/interpretation

Impaired beta cell function during the night shift may result from normal circadian variation, the effect of rotational shift-work or a combination of both. As a consequence, higher postprandial glucose concentrations are observed during the night shift.
Anhänge
Nur mit Berechtigung zugänglich
Literatur
1.
Zurück zum Zitat Pan A, Schernhammer ES, Sun Q, Hu FB (2011) Rotating night shift work and risk of type 2 diabetes: two prospective cohort studies in women. PLoS Med 8:e1001141CrossRefPubMedPubMedCentral Pan A, Schernhammer ES, Sun Q, Hu FB (2011) Rotating night shift work and risk of type 2 diabetes: two prospective cohort studies in women. PLoS Med 8:e1001141CrossRefPubMedPubMedCentral
2.
Zurück zum Zitat Suwazono Y, Dochi M, Oishi M, Tanaka K, Kobayashi E, Sakata K (2009) Shiftwork and impaired glucose metabolism: a 14-year cohort study on 7104 male workers. Chronobiol Int 26:926–941CrossRefPubMed Suwazono Y, Dochi M, Oishi M, Tanaka K, Kobayashi E, Sakata K (2009) Shiftwork and impaired glucose metabolism: a 14-year cohort study on 7104 male workers. Chronobiol Int 26:926–941CrossRefPubMed
4.
Zurück zum Zitat Fonken LK, Nelson RJ (2014) The effects of light at night on circadian clocks and metabolism. Endocr Rev 35:648–670CrossRefPubMed Fonken LK, Nelson RJ (2014) The effects of light at night on circadian clocks and metabolism. Endocr Rev 35:648–670CrossRefPubMed
6.
Zurück zum Zitat Buxton OM, Cain SW, O’Connor SP et al (2012) Adverse metabolic consequences in humans of prolonged sleep restriction combined with circadian disruption. Sci Transl Med 4:129ra143CrossRef Buxton OM, Cain SW, O’Connor SP et al (2012) Adverse metabolic consequences in humans of prolonged sleep restriction combined with circadian disruption. Sci Transl Med 4:129ra143CrossRef
7.
Zurück zum Zitat Scheer FA, Hilton MF, Mantzoros CS, Shea SA (2009) Adverse metabolic and cardiovascular consequences of circadian misalignment. Proc Natl Acad Sci U S A 106:4453–4458CrossRefPubMedPubMedCentral Scheer FA, Hilton MF, Mantzoros CS, Shea SA (2009) Adverse metabolic and cardiovascular consequences of circadian misalignment. Proc Natl Acad Sci U S A 106:4453–4458CrossRefPubMedPubMedCentral
8.
Zurück zum Zitat Fujishiro K, Lividoti Hibert E, Schernhammer E, Rich-Edwards JW (2017) Shift work, job strain and changes in the body mass index among women: a prospective study. Occup Environ Med 74:410–416 Fujishiro K, Lividoti Hibert E, Schernhammer E, Rich-Edwards JW (2017) Shift work, job strain and changes in the body mass index among women: a prospective study. Occup Environ Med 74:410–416
9.
Zurück zum Zitat Hastings MH, Reddy AB, Maywood ES (2003) A clockwork web: circadian timing in brain and periphery, in health and disease. Nat Rev Neurosci 4:649–661CrossRefPubMed Hastings MH, Reddy AB, Maywood ES (2003) A clockwork web: circadian timing in brain and periphery, in health and disease. Nat Rev Neurosci 4:649–661CrossRefPubMed
10.
Zurück zum Zitat Buijs RM, Kalsbeek A (2001) Hypothalamic integration of central and peripheral clocks. Nat Rev Neurosci 2:521–526CrossRefPubMed Buijs RM, Kalsbeek A (2001) Hypothalamic integration of central and peripheral clocks. Nat Rev Neurosci 2:521–526CrossRefPubMed
11.
Zurück zum Zitat Takahashi JS, Hong HK, Ko CH, McDearmon EL (2008) The genetics of mammalian circadian order and disorder: implications for physiology and disease. Nat Rev Genet 9:764–775CrossRefPubMedPubMedCentral Takahashi JS, Hong HK, Ko CH, McDearmon EL (2008) The genetics of mammalian circadian order and disorder: implications for physiology and disease. Nat Rev Genet 9:764–775CrossRefPubMedPubMedCentral
12.
Zurück zum Zitat Perelis M, Ramsey KM, Marcheva B, Bass J (2016) Circadian transcription from beta cell function to diabetes pathophysiology. J Biol Rhythm 31:323–336CrossRef Perelis M, Ramsey KM, Marcheva B, Bass J (2016) Circadian transcription from beta cell function to diabetes pathophysiology. J Biol Rhythm 31:323–336CrossRef
13.
Zurück zum Zitat Boden G, Ruiz J, Urbain JL, Chen X (1996) Evidence for a circadian rhythm of insulin secretion. Am J Phys 271:E246–E252 Boden G, Ruiz J, Urbain JL, Chen X (1996) Evidence for a circadian rhythm of insulin secretion. Am J Phys 271:E246–E252
14.
Zurück zum Zitat Qian J, Block GD, Colwell CS, Matveyenko AV (2013) Consequences of exposure to light at night on the pancreatic islet circadian clock and function in rats. Diabetes 62:3469–3478CrossRefPubMedPubMedCentral Qian J, Block GD, Colwell CS, Matveyenko AV (2013) Consequences of exposure to light at night on the pancreatic islet circadian clock and function in rats. Diabetes 62:3469–3478CrossRefPubMedPubMedCentral
15.
Zurück zum Zitat Rakshit K, Hsu TW, Matveyenko AV (2016) Bmal1 is required for beta cell compensatory expansion, survival and metabolic adaptation to diet-induced obesity in mice. Diabetologia 59:734–743CrossRefPubMedPubMedCentral Rakshit K, Hsu TW, Matveyenko AV (2016) Bmal1 is required for beta cell compensatory expansion, survival and metabolic adaptation to diet-induced obesity in mice. Diabetologia 59:734–743CrossRefPubMedPubMedCentral
16.
17.
Zurück zum Zitat Lamia KA, Storch KF, Weitz CJ (2008) Physiological significance of a peripheral tissue circadian clock. Proc Natl Acad Sci U S A 105:15172–15177CrossRefPubMedPubMedCentral Lamia KA, Storch KF, Weitz CJ (2008) Physiological significance of a peripheral tissue circadian clock. Proc Natl Acad Sci U S A 105:15172–15177CrossRefPubMedPubMedCentral
18.
Zurück zum Zitat Liu J, Zhou B, Yan M et al (2016) CLOCK and BMAL1 regulate muscle insulin sensitivity via SIRT1 in male mice. Endocrinology 157:2259–2269CrossRefPubMed Liu J, Zhou B, Yan M et al (2016) CLOCK and BMAL1 regulate muscle insulin sensitivity via SIRT1 in male mice. Endocrinology 157:2259–2269CrossRefPubMed
19.
Zurück zum Zitat Dowling HJ, Fried SK, Pi-Sunyer FX (1995) Insulin resistance in adipocytes of obese women: effects of body fat distribution and race. Metabolism 44:987–995CrossRefPubMed Dowling HJ, Fried SK, Pi-Sunyer FX (1995) Insulin resistance in adipocytes of obese women: effects of body fat distribution and race. Metabolism 44:987–995CrossRefPubMed
20.
Zurück zum Zitat Sathananthan A, Man CD, Zinsmeister AR et al (2012) A concerted decline in insulin secretion and action occurs across the spectrum of fasting and postchallenge glucose concentrations. Clin Endocrinol 76:212–219CrossRef Sathananthan A, Man CD, Zinsmeister AR et al (2012) A concerted decline in insulin secretion and action occurs across the spectrum of fasting and postchallenge glucose concentrations. Clin Endocrinol 76:212–219CrossRef
22.
Zurück zum Zitat Vella A, Rizza RA (2009) Application of isotopic techniques using constant specific activity or enrichment to the study of carbohydrate metabolism. Diabetes 58:2168–2174CrossRefPubMedPubMedCentral Vella A, Rizza RA (2009) Application of isotopic techniques using constant specific activity or enrichment to the study of carbohydrate metabolism. Diabetes 58:2168–2174CrossRefPubMedPubMedCentral
23.
Zurück zum Zitat Beylot M, Previs SF, David F, Brunengraber H (1993) Determination of the 13C-labeling pattern of glucose by gas chromatography-mass spectrometry. Anal Biochem 212:526–531CrossRefPubMed Beylot M, Previs SF, David F, Brunengraber H (1993) Determination of the 13C-labeling pattern of glucose by gas chromatography-mass spectrometry. Anal Biochem 212:526–531CrossRefPubMed
24.
Zurück zum Zitat Steele R, Bjerknes C, Rathgeb I, Altszuler N (1968) Glucose uptake and production during the oral glucose tolerance test. Diabetes 17:415–421CrossRefPubMed Steele R, Bjerknes C, Rathgeb I, Altszuler N (1968) Glucose uptake and production during the oral glucose tolerance test. Diabetes 17:415–421CrossRefPubMed
25.
Zurück zum Zitat Van Cauter E, Mestrez F, Sturis J, Polonsky KS (1992) Estimation of insulin secretion rates from C-peptide levels. Comparison of individual and standard kinetic parameters for C-peptide clearance. Diabetes 41:368–377CrossRefPubMed Van Cauter E, Mestrez F, Sturis J, Polonsky KS (1992) Estimation of insulin secretion rates from C-peptide levels. Comparison of individual and standard kinetic parameters for C-peptide clearance. Diabetes 41:368–377CrossRefPubMed
26.
Zurück zum Zitat Bock G, Dalla Man C, Micheletto F et al (2010) The effect of DPP-4 inhibition with sitagliptin on incretin secretion and on fasting and postprandial glucose turnover in subjects with impaired fasting glucose. Clin Endocrinol 73:189–196 Bock G, Dalla Man C, Micheletto F et al (2010) The effect of DPP-4 inhibition with sitagliptin on incretin secretion and on fasting and postprandial glucose turnover in subjects with impaired fasting glucose. Clin Endocrinol 73:189–196
27.
Zurück zum Zitat Shah M, Law JH, Micheletto F et al (2014) Contribution of endogenous glucagon-like peptide 1 to glucose metabolism after Roux-en-Y gastric bypass. Diabetes 63:483–493CrossRefPubMedPubMedCentral Shah M, Law JH, Micheletto F et al (2014) Contribution of endogenous glucagon-like peptide 1 to glucose metabolism after Roux-en-Y gastric bypass. Diabetes 63:483–493CrossRefPubMedPubMedCentral
28.
Zurück zum Zitat Smushkin G, Sathananthan M, Piccinini F et al (2013) The effect of a bile acid sequestrant on glucose metabolism in subjects with type 2 diabetes. Diabetes 62:1094–1101CrossRefPubMedPubMedCentral Smushkin G, Sathananthan M, Piccinini F et al (2013) The effect of a bile acid sequestrant on glucose metabolism in subjects with type 2 diabetes. Diabetes 62:1094–1101CrossRefPubMedPubMedCentral
29.
Zurück zum Zitat Dalla Man C, Bock G, Giesler PD et al (2009) Dipeptidyl peptidase-4 inhibition by vildagliptin and the effect on insulin secretion and action in response to meal ingestion in type 2 diabetes. Diabetes Care 32:14–18CrossRefPubMedPubMedCentral Dalla Man C, Bock G, Giesler PD et al (2009) Dipeptidyl peptidase-4 inhibition by vildagliptin and the effect on insulin secretion and action in response to meal ingestion in type 2 diabetes. Diabetes Care 32:14–18CrossRefPubMedPubMedCentral
30.
Zurück zum Zitat Bock G, Dalla Man C, Campioni M et al (2006) Pathogenesis of pre-diabetes: mechanisms of fasting and postprandial hyperglycemia in people with impaired fasting glucose and/or impaired glucose tolerance. Diabetes 55:3536–3549CrossRefPubMed Bock G, Dalla Man C, Campioni M et al (2006) Pathogenesis of pre-diabetes: mechanisms of fasting and postprandial hyperglycemia in people with impaired fasting glucose and/or impaired glucose tolerance. Diabetes 55:3536–3549CrossRefPubMed
32.
Zurück zum Zitat Basu A, Caumo A, Bettini F et al (1997) Impaired basal glucose effectiveness in NIDDM: contribution of defects in glucose disappearance and production, measured using an optimized minimal model independent protocol. Diabetes 46:421–432CrossRefPubMed Basu A, Caumo A, Bettini F et al (1997) Impaired basal glucose effectiveness in NIDDM: contribution of defects in glucose disappearance and production, measured using an optimized minimal model independent protocol. Diabetes 46:421–432CrossRefPubMed
33.
Zurück zum Zitat Saad A, Dalla Man C, Nandy DK et al (2012) Diurnal pattern to insulin secretion and insulin action in healthy individuals. Diabetes 61:2691–2700CrossRefPubMedPubMedCentral Saad A, Dalla Man C, Nandy DK et al (2012) Diurnal pattern to insulin secretion and insulin action in healthy individuals. Diabetes 61:2691–2700CrossRefPubMedPubMedCentral
34.
Zurück zum Zitat Service FJ, Hall LD, Westland RE et al (1983) Effects of size, time of day and sequence of meal ingestion on carbohydrate tolerance in normal subjects. Diabetologia 25:316–321CrossRefPubMed Service FJ, Hall LD, Westland RE et al (1983) Effects of size, time of day and sequence of meal ingestion on carbohydrate tolerance in normal subjects. Diabetologia 25:316–321CrossRefPubMed
35.
Zurück zum Zitat Van Cauter E, Shapiro ET, Tillil H, Polonsky KS (1992) Circadian modulation of glucose and insulin responses to meals: relationship to cortisol rhythm. Am J Phys 262:E467–E475 Van Cauter E, Shapiro ET, Tillil H, Polonsky KS (1992) Circadian modulation of glucose and insulin responses to meals: relationship to cortisol rhythm. Am J Phys 262:E467–E475
36.
Zurück zum Zitat Faerch K, Vistisen D, Pacini G et al (2016) Insulin resistance is accompanied by increased fasting glucagon and delayed glucagon suppression in individuals with normal and impaired glucose regulation. Diabetes 65:3473–3481CrossRefPubMed Faerch K, Vistisen D, Pacini G et al (2016) Insulin resistance is accompanied by increased fasting glucagon and delayed glucagon suppression in individuals with normal and impaired glucose regulation. Diabetes 65:3473–3481CrossRefPubMed
37.
Zurück zum Zitat Rakshit K, Qian J, Ernst J, Matveyenko AV (2016) Circadian variation of the pancreatic islet transcriptome. Physiol Genomics 48:677–687CrossRefPubMed Rakshit K, Qian J, Ernst J, Matveyenko AV (2016) Circadian variation of the pancreatic islet transcriptome. Physiol Genomics 48:677–687CrossRefPubMed
38.
Zurück zum Zitat Perelis M, Marcheva B, Ramsey KM et al. (2015) Pancreatic beta cell enhancers regulate rhythmic transcription of genes controlling insulin secretion. Science 350: aac4250 Perelis M, Marcheva B, Ramsey KM et al. (2015) Pancreatic beta cell enhancers regulate rhythmic transcription of genes controlling insulin secretion. Science 350: aac4250
39.
Zurück zum Zitat Morris CJ, Purvis TE, Mistretta J, Scheer FA (2016) Effects of the internal circadian system and circadian misalignment on glucose tolerance in chronic shift workers. J Clin Endocrinol Metab 101:1066–1074CrossRefPubMedPubMedCentral Morris CJ, Purvis TE, Mistretta J, Scheer FA (2016) Effects of the internal circadian system and circadian misalignment on glucose tolerance in chronic shift workers. J Clin Endocrinol Metab 101:1066–1074CrossRefPubMedPubMedCentral
40.
Zurück zum Zitat Hansen AB, Stayner L, Hansen J, Andersen ZJ (2016) Night shift work and incidence of diabetes in the Danish Nurse Cohort. Occup Environ Med 73:262–268CrossRefPubMed Hansen AB, Stayner L, Hansen J, Andersen ZJ (2016) Night shift work and incidence of diabetes in the Danish Nurse Cohort. Occup Environ Med 73:262–268CrossRefPubMed
41.
Zurück zum Zitat Simon C, Weibel L, Brandenberger G (2000) Twenty-four-hour rhythms of plasma glucose and insulin secretion rate in regular night workers. Am J Physiol Endocrinol Metab 278:E413–E420PubMed Simon C, Weibel L, Brandenberger G (2000) Twenty-four-hour rhythms of plasma glucose and insulin secretion rate in regular night workers. Am J Physiol Endocrinol Metab 278:E413–E420PubMed
42.
Zurück zum Zitat Van Cauter E, Blackman JD, Roland D, Spire JP, Refetoff S, Polonsky KS (1991) Modulation of glucose regulation and insulin secretion by circadian rhythmicity and sleep. J Clin Invest 88:934–942CrossRefPubMedPubMedCentral Van Cauter E, Blackman JD, Roland D, Spire JP, Refetoff S, Polonsky KS (1991) Modulation of glucose regulation and insulin secretion by circadian rhythmicity and sleep. J Clin Invest 88:934–942CrossRefPubMedPubMedCentral
Metadaten
Titel
Glucose metabolism during rotational shift-work in healthcare workers
verfasst von
Anu Sharma
Marcello C. Laurenti
Chiara Dalla Man
Ron T. Varghese
Claudio Cobelli
Robert A. Rizza
Aleksey Matveyenko
Adrian Vella
Publikationsdatum
27.05.2017
Verlag
Springer Berlin Heidelberg
Erschienen in
Diabetologia / Ausgabe 8/2017
Print ISSN: 0012-186X
Elektronische ISSN: 1432-0428
DOI
https://doi.org/10.1007/s00125-017-4317-0

Weitere Artikel der Ausgabe 8/2017

Diabetologia 8/2017 Zur Ausgabe

Up front

Up front

Leitlinien kompakt für die Innere Medizin

Mit medbee Pocketcards sicher entscheiden.

Seit 2022 gehört die medbee GmbH zum Springer Medizin Verlag

Update Innere Medizin

Bestellen Sie unseren Fach-Newsletter und bleiben Sie gut informiert.