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Am J Physiol Endocrinol Metab 290: E1218-E1226, 2006. First published January 31, 2006; doi:10.1152/ajpendo.00474.2005
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Glucose metabolic adaptations in the intrauterine growth-restricted adult female rat offspring

Meena Garg,1 Manikkavasagar Thamotharan,1 Lisa Rogers,1 Sara Bassilian,2 W. N. Paul Lee,2 and Sherin U. Devaskar1

Division of Neonatology and Developmental Biology, Department of Pediatrics, 1David Geffen School of Medicine at University of California at Los Angeles, Los Angeles, and 2Harbor-UCLA Medical Center, Torrance, California

Submitted 30 September 2005 ; accepted in final form 11 January 2006

We studied glucose metabolic adaptations in the intrauterine growth-restricted (IUGR) rat offspring to decipher glucose homeostasis in metabolic programming. Glucose futile cycling (GFC), which is altered when there is imbalance between glucose production and utilization, was studied during a glucose tolerance test (GTT) in 2-day-old (n = 8), 2-mo-old (n = 22), and 15-mo-old (n = 22) female rat offspring. The IUGR rats exposed to either prenatal (CM/SP, n = 5 per age), postnatal (SM/CP, n = 6), or pre- and postnatal (SM/SP, n = 6) nutrient restriction were compared with age-matched controls (CM/CP, n = 5). At 2 days, IUGR pups (SP) were smaller and glucose intolerant and had increased hepatic glucose production and increased glucose disposal (P < 0.01) compared with controls (CP). At 2 mo, the GTT, glucose clearance, and GFC did not change. However, a decline in hepatic glucose-6-phosphatase (P < 0.05) and fructose-1,6-biphosphatase (P < 0.05) enzyme activities in the IUGR offspring was detected. At 15 mo, prenatal nutrient restriction (CM/SP) resulted in greater weight gain (P < 0.01) and hyperinsulinemia (P < 0.001) compared with postnatal nutrient restriction (SM/CP). A decline in GFC in the face of a normal GTT occurred in both the prenatal (CM/SP, P < 0.01) and postnatal calorie (SM/CP, P < 0.03) and growth-restricted offspring. The IUGR offspring with pre- and postnatal nutrient restriction (SM/SP) were smaller, hypoinsulinemic (P < 0.03), and hypoleptinemic (P < 0.03), with no change in GTT, hepatic glucose production, GFC, or glucose clearance. We conclude that there is pre- and postnatal programming that affects the postnatal compensatory adaptation of GFC and disposal initiated by changes in circulating insulin concentrations, thereby determining hepatic insulin sensitivity in a phenotype-specific manner.

glucose tolerance test; glucose homeostasis; glucose recycling; hepatic futile cycling; metabolic programming



Address for reprint requests and other correspondence: M. Garg or S. U. Devaskar, Dept. of Pediatrics, David Geffen School of Medicine, UCLA, 10833 Le Conte, MDCC-B2-375, Los Angeles, CA 90095-1752




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