In normal man, plasma glucose responses to oral glucose, meals or intravenous glucose may be more than 100% larger in the evening than in the morning. These morning-evening differences are related to a diurnal variation in set-point of the glucose regulation with maximal glucose levels around midsleep. This diurnal variation persists during continuous bedrest, is independent of the feeding schedule and is not directly related to changes in insulin secretion. The overall objective of this proposal is to delineate the roles of circadian rhythmicity (intrinsic effects of time of day irrespective of the sleep condition), and sleep (intrinsic effects of the sleep condition irrespective of the time of day) in this physiological modulation of glucose levels. Our strategy will be quantify the diurnal variations of glucose levels and insulin secretion under a variety of conditions where circadian rhythmicity, sleep and counterregulatory hormones regulated by circadian rhythmicity (cortisol) or sleep (GH) are experimentally manipulated or pathologically altered. These conditions will include 1. dissociation between circadian rhythmicity and sleep by a 12- h shift of the sleep-wake cycle 2. sleep deprivation 3. circadian rhythm deprivation by exposure to bright light at specific times of day 4. amplification of diurnal rhythms of cortisol and GH using appropriately timed injections of CHR and GHRH respectively 5. aging, a state of reduced sleep efficiency, reduced circadian rhythmicity and reduced GH secretion 6. non-insulin-dependent diabetes (NIDDM), a state of glucose intolerance and excessive GH secretin. Frequent blood sampling, polygraphic sleep recordings, direct in vivo estimations of hormonal secretion and detailed mathematical analyses will be used to accurately delineate the temporal organization of the hormonal system controlling glucose levels in each of these conditions. The proposed studies will identify primary mechanisms involved in the normal physiological regulation of glucose levels and examine the role of sleep an circadian rhythms abnormalities in the pathogenesis of glucose intolerance in aging and NIDDM. Their results will provide the basic information necessary to optimize the diagnosis and treatment of conditions of impaired glucose tolerance with respect to time of day and to define strategies facilitating the adaptation to abrupt shifts of the sleep-wake cycle (such as occur in """"""""jet lag"""""""") for subjects with NIDDM.

Agency
National Institute of Health (NIH)
Institute
National Institute of Diabetes and Digestive and Kidney Diseases (NIDDK)
Type
Research Project (R01)
Project #
5R01DK041814-04
Application #
2141917
Study Section
Endocrinology Study Section (END)
Project Start
1989-07-01
Project End
1997-04-30
Budget Start
1993-07-01
Budget End
1997-04-30
Support Year
4
Fiscal Year
1993
Total Cost
Indirect Cost
Name
University of Chicago
Department
Internal Medicine/Medicine
Type
Schools of Medicine
DUNS #
225410919
City
Chicago
State
IL
Country
United States
Zip Code
60637
Guyon, Aurore; Morselli, Lisa L; Balbo, Marcella L et al. (2017) Effects of Insufficient Sleep on Pituitary-Adrenocortical Response to CRH Stimulation in Healthy Men. Sleep 40:
Ip, Mary; Mokhlesi, Babak (2007) Sleep and Glucose Intolerance/Diabetes Mellitus. Sleep Med Clin 2:19-29
Tasali, Esra; Van Cauter, Eve; Ehrmann, David A (2006) Relationships between sleep disordered breathing and glucose metabolism in polycystic ovary syndrome. J Clin Endocrinol Metab 91:36-42
Knutson, Kristen L; Ryden, Armand M; Mander, Bryce A et al. (2006) Role of sleep duration and quality in the risk and severity of type 2 diabetes mellitus. Arch Intern Med 166:1768-74
Spiegel, Karine; Tasali, Esra; Penev, Plamen et al. (2004) Brief communication: Sleep curtailment in healthy young men is associated with decreased leptin levels, elevated ghrelin levels, and increased hunger and appetite. Ann Intern Med 141:846-50
Spiegel, Karine; Leproult, Rachel; L'hermite-Baleriaux, Mireille et al. (2004) Leptin levels are dependent on sleep duration: relationships with sympathovagal balance, carbohydrate regulation, cortisol, and thyrotropin. J Clin Endocrinol Metab 89:5762-71
Burgess, Helen J; Penev, Plamen D; Schneider, Renate et al. (2004) Estimating cardiac autonomic activity during sleep: impedance cardiography, spectral analysis, and Poincare plots. Clin Neurophysiol 115:19-28
Spiegel, K; Leproult, R; Van Cauter, E (2003) [Impact of sleep debt on physiological rhythms] Rev Neurol (Paris) 159:6S11-20
Leproult, Rachel; Colecchia, Egidio F; Berardi, Anna Maria et al. (2003) Individual differences in subjective and objective alertness during sleep deprivation are stable and unrelated. Am J Physiol Regul Integr Comp Physiol 284:R280-90
Spiegel, Karine; Sheridan, John F; Van Cauter, Eve (2002) Effect of sleep deprivation on response to immunization. JAMA 288:1471-2

Showing the most recent 10 out of 60 publications