Saeedi P, Petersohn I, Salpea P, Malanda B, Karuranga S, Unwin N, Colagiuri S, Guariguata L, Motala AA, Ogurtsova K, et al. Global and regional diabetes prevalence estimates for 2019 and projections for 2030 and 2045: Results from the International Diabetes Federation Diabetes Atlas, 9(th) edition. DIABETES RES CLIN PR. 2019;157: 107843.
Ley SH, Hamdy O, Mohan V, Hu FB. Prevention and management of type 2 diabetes: dietary components and nutritional strategies. Lancet. 2014;383(9933):1999–2007.
Article PubMed PubMed Central CAS Google Scholar
Forouhi NG, Misra A, Mohan V, Taylor R, Yancy W. Dietary and nutritional approaches for prevention and management of type 2 diabetes. BMJ-BRIT MED J. 2018;361: k2234.
Magkos F, Hjorth MF, Astrup A. Diet and exercise in the prevention and treatment of type 2 diabetes mellitus. NAT REV ENDOCRINOL. 2020;16(10):545–55.
Peng X, Fan R, Xie L, Shi X, Dong K, Zhang S, Tao J, Xu W, Ma D, Chen J et al. A Growing Link between Circadian Rhythms, Type 2 Diabetes Mellitus and Alzheimer's Disease. Int J Mol Sci. 2022;23(1):1–24.
Mason IC, Qian J, Adler GK, Scheer F. Impact of circadian disruption on glucose metabolism: implications for type 2 diabetes. Diabetologia. 2020;63(3):462–72.
Article PubMed PubMed Central CAS Google Scholar
Hariri A, Mirian M, Zarrabi A, Kohandel M, Amini-Pozveh M, Aref AR, Tabatabaee A, Prabhakar PK, Sivakumar PM. The circadian rhythm: an influential soundtrack in the diabetes story. FRONT ENDOCRINOL. 2023;14:1156757.
van der Merwe C, Munch M, Kruger R. Chronotype Differences in Body Composition, Dietary Intake and Eating Behavior Outcomes: A Scoping Systematic Review. ADV NUTR. 2022;13(6):2357–405.
Article PubMed PubMed Central Google Scholar
Henry CJ, Kaur B, Quek R. Chrononutrition in the management of diabetes. NUTR DIABETES. 2020;10(1):6.
Article PubMed PubMed Central Google Scholar
Hawley JA, Sassone-Corsi P, Zierath JR. Chrono-nutrition for the prevention and treatment of obesity and type 2 diabetes: from mice to men. Diabetologia. 2020;63(11):2253–9.
Oike H, Oishi K, Kobori M. Nutrients, Clock Genes, and Chrononutrition. CURR NUTR REP. 2014;3(3):204–12.
Article PubMed PubMed Central CAS Google Scholar
Ma L, Hu Y, Alperet DJ, Liu G, Malik V, Manson JE, Rimm EB, Hu FB, Sun Q. Beverage consumption and mortality among adults with type 2 diabetes: prospective cohort study. BMJ-BRIT MED J. 2023;381: e73406.
Shahinfar H, Jayedi A, Khan TA, Shab-Bidar S. Coffee consumption and cardiovascular diseases and mortality in patients with type 2 diabetes: A systematic review and dose-response meta-analysis of cohort studies. NUTR METAB CARDIOVAS. 2021;31(9):2526–38.
Yang J, Mao QX, Xu HX, Ma X, Zeng CY. Tea consumption and risk of type 2 diabetes mellitus: a systematic review and meta-analysis update. BMJ Open. 2014;4(7): e5632.
Lee PH, Nan H. Tea consumption and risk of type 2 diabetes: a longitudinal study with data from the Chinese Health and Nutrition Survey. LANCET DIABETES ENDO. 2016;4:S21.
Whitehead N, White H. Systematic review of randomised controlled trials of the effects of caffeine or caffeinated drinks on blood glucose concentrations and insulin sensitivity in people with diabetes mellitus. J HUM NUTR DIET. 2013;26(2):111–25.
Article PubMed CAS Google Scholar
Burke TM, Markwald RR, McHill AW, Chinoy ED, Snider JA, Bessman SC, Jung CM, O’Neill JS, Wright KJ. Effects of caffeine on the human circadian clock in vivo and in vitro. SCI TRANSL MED. 2015;7(305):305ra146.
Article PubMed PubMed Central Google Scholar
Takahashi M, Ozaki M, Tsubosaka M, Kim HK, Sasaki H, Matsui Y, Hibi M, Osaki N, Miyashita M, Shibata S. Effects of Timing of Acute and Consecutive Catechin Ingestion on Postprandial Glucose Metabolism in Mice and Humans. Nutrients. 2020;12(2):1–17.
He J, Zhu Z, Bundy JD, Dorans KS, Chen J, Hamm LL. Trends in Cardiovascular Risk Factors in US Adults by Race and Ethnicity and Socioeconomic Status, 1999–2018. JAMA-J AM MED ASSOC. 2021;326(13):1286–98.
Fang ZF, Liu J, Rehm CD, Wilde P, Mande JR, Mozaffarian D. Trends and Disparities in Diet Quality Among US Adults by Supplemental Nutrition Assistance Program Participation Status. JAMA NETW OPEN. 2018;1(2): e180237.
Fukagawa NK, McKillop K, Pehrsson PR, Moshfegh A, Harnly J, Finley J. USDA’s FoodData Central: what is it and why is it needed today? AM J CLIN NUTR. 2022;115(3):619–24.
Beaven CM, Hopkins WG, Hansen KT, Wood MR, Cronin JB, Lowe TE. Dose effect of caffeine on testosterone and cortisol responses to resistance exercise. INT J SPORT NUTR EXE. 2008;18(2):131–41.
Giles GE, Mahoney CR, Brunye TT, Taylor HA, Kanarek RB. Caffeine and theanine exert opposite effects on attention under emotional arousal. CAN J PHYSIOL PHARM. 2017;95(1):93–100.
Xu D, Zhang B, Liang G, Ping J, Kou H, Li X, Xiong J, Hu D, Chen L, Magdalou J, et al. Caffeine-induced activated glucocorticoid metabolism in the hippocampus causes hypothalamic-pituitary-adrenal axis inhibition in fetal rats. PLoS ONE. 2012;7(9): e44497.
Article PubMed PubMed Central CAS Google Scholar
Batalha VL, Ferreira DG, Coelho JE, Valadas JS, Gomes R, Temido-Ferreira M, Shmidt T, Baqi Y, Buee L, Muller CE, et al. The caffeine-binding adenosine A2A receptor induces age-like HPA-axis dysfunction by targeting glucocorticoid receptor function. SCI REP-UK. 2016;6:31493.
Negri M, Pivonello C, Simeoli C, Di Gennaro G, Venneri MA, Sciarra F, Ferrigno R, de Angelis C, Sbardella E, De Martino MC, et al. Cortisol Circadian Rhythm and Insulin Resistance in Muscle: Effect of Dosing and Timing of Hydrocortisone Exposure on Insulin Sensitivity in Synchronized Muscle Cells. Neuroendocrinology. 2021;111(10):1005–28.
Article PubMed CAS Google Scholar
Krieger DT, Allen W, Rizzo F, Krieger HP. Characterization of the normal temporal pattern of plasma corticosteroid levels. J CLIN ENDOCR METAB. 1971;32(2):266–84.
Article PubMed CAS Google Scholar
Adam EK, Quinn ME, Tavernier R, McQuillan MT, Dahlke KA, Gilbert KE. Diurnal cortisol slopes and mental and physical health outcomes: A systematic review and meta-analysis. PSYCHONEUROENDOCRINO. 2017;83:25–41.
Forrestel AC, Miedlich SU, Yurcheshen M, Wittlin SD, Sellix MT. Chronomedicine and type 2 diabetes: shining some light on melatonin. Diabetologia. 2017;60(5):808–22.
Article PubMed CAS Google Scholar
Mort JR, Kruse HR. Timing of blood pressure measurement related to caffeine consumption. ANN PHARMACOTHER. 2008;42(1):105–10.
Article PubMed CAS Google Scholar
Ding G, Li X, Hou X, Zhou W, Gong Y, Liu F, He Y, Song J, Wang J, Basil P, et al. REV-ERB in GABAergic neurons controls diurnal hepatic insulin sensitivity. Nature. 2021;592(7856):763–7.
Article PubMed PubMed Central CAS Google Scholar
Borges-Martins V, Ferreira D, Souto AC, Oliveira NJ, Pereira-Figueiredo D, Da CCK, de Jesus OK, Manhaes AC, de Melo RR, Kubrusly R. Caffeine regulates GABA transport via A(1)R blockade and cAMP signaling. NEUROCHEM INT. 2019;131: 104550.
Article PubMed CAS Google Scholar
Boden G, Chen X, Urbain JL. Evidence for a circadian rhythm of insulin sensitivity in patients with NIDDM caused by cyclic changes in hepatic glucose production. Diabetes. 1996;45(8):1044–50.
Article PubMed CAS Google Scholar
Oster H, Challet E, Ott V, Arvat E, de Kloet ER, Dijk DJ, Lightman S, Vgontzas A, Van Cauter E. The Functional and Clinical Significance of the 24-Hour Rhythm of Circulating Glucocorticoids. ENDOCR REV. 2017;38(1):3–45.
Peng F, Li X, Xiao F, Zhao R, Sun Z. Circadian clock, diurnal glucose metabolic rhythm, and dawn phenomenon. TRENDS NEUROSCI. 2022;45(6):471–82.
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