Intermittent Food Deprivation Improves Cardiovascular and Neuroendocrine Responses to Stress in Rats
Open Access
- 1 June 2003
- journal article
- research article
- Published by Elsevier in Journal of Nutrition
- Vol. 133 (6) , 1921-1929
- https://doi.org/10.1093/jn/133.6.1921
Abstract
Stressful events may trigger disease processes in many different organ systems, with the cardiovascular system being particularly vulnerable. Five-mo-old male rats had ad libitum (AL) access to food or were deprived of food every other day [intermittent food deprivation (IF)] for 6 mo, during which time their heart rate (HR), blood pressure (BP), physical activity and body temperature were measured by radiotelemetry under nonstress and stress (immobilization or cold-water swim) conditions. IF rats had significantly lower basal HR and BP, and significantly lower increases in HR and BP after exposures to the immobilization and swim stressors. Basal levels of adrenocorticotropic hormone (ACTH) and corticosterone were greater in the IF rats. However, in contrast to large stress-induced increases in ACTH, corticosterone and epinephrine levels in AL rats, increases in these hormones in response to repeated immobilization stress sessions were reduced or absent in IF rats. Nevertheless, the IF rats exhibited robust hypothalamic/pituitary and sympathetic neuroendocrine responses to a different stress (swim). The IF treatment improved glucose metabolism, as indicated by lower basal levels of circulating glucose and insulin, but with maintenance of glucose and insulin responses to stress. We concluded that improvements in cardiovascular risk factors and cardiovascular and neuroendocrine stress adaptation occur in response to IF.Keywords
This publication has 39 references indexed in Scilit:
- Diabetes and Cardiovascular DiseasesClinical Journal of Sport Medicine, 2002
- Evidence that brain‐derived neurotrophic factor is required for basal neurogenesis and mediates, in part, the enhancement of neurogenesis by dietary restriction in the hippocampus of adult miceJournal of Neurochemistry, 2002
- Oxidative Stress in Arterial HypertensionHypertension, 2001
- Caloric Intake and AgingNew England Journal of Medicine, 1997
- Dietary Fat and Risk of Chronic Disease: Insights from Experimental Studies MechanisticJournal of the American Dietetic Association, 1997
- The Physiologic, Neurologic, and Behavioral Effects of Caloric Restriction Related to Aging, Disease, and Environmental FactorsEnvironmental Research, 1997
- Effect of age and caloric restriction on DNA oxidative damage in different tissues of C57BL/6 miceMechanisms of Ageing and Development, 1994
- Role of sympathetic activity in blood pressure reduction with low calorie regimen.Hypertension, 1991
- Effects of caloric restriction and weight loss on glycemic control, insulin release and resistance, and atherosclerotic risk in obese patients with type II diabetes mellitusThe American Journal of Medicine, 1984
- Caloric restriction lowers blood pressure in the spontaneously hypertensive ratMetabolism, 1978