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Journal of Nutrition Vol. 117 No. 8 August 1987, pp. 1463-1468
Copyright © 1987 by American Society for Nutrition
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Growth and Cellular Composition in Rats with Intrauterine Growth Retardation: Effects of Postnatal Nutrition1

Chung-Ja M. Cha, Nancy L. Gelardi and William Oh2

Department of Pediatrics, Brown University Program in Medicine, Women and Infants Hospital of Rhode Island, Providence, RI 02905

We evaluated the catch-up growth of rats with intrauterine growth retardation (IUGR) raised in normal litters (8–10 pups) or in large litters (14–16 pups) during the first 2 wk of life. We also studied the influence of nutrition on cellular composition at birth and at 2 wk. Fifty-four pups (27 IUGR and 27 controls) were enrolled into normal or undernutrition groups. Postnatal undernutrition resulted in significantly lower growth in both control and IUGR rat pups than in normally fed pups. In the control group, postnatal undernutrition resulted in a lower liver weight but not a lower brain weight. Underfeeding of the IUGR group produced a greater number of cells of the brain and liver, but with smaller cell size than in normally fed IUGR rats. We conclude that compensatory catch-up growth in the mild-IUGR rat occurs if the postnatal nutrition is adequate. When postnatal nutrition is restricted, the non-IUGR rats became malnourished at 2 wk of age and the mild-IUGR rats did not demonstrate the catch-up growth phenomenon as was seen in those with adequate nutrition. In the severe-IUGR rat, undernutrition further compromised growth rate, so that at 2 wk of age their weights were the lowest of all the groups studied.


KEY WORDS: • growth • cell composition • intrauterine growth retardation • postnatal nutrition

1 Supported by Perinatal Research Center Grant No. P50 HD11343-07 and Training in Perinatal Biology Grant No. 5 T32 HD07232-04 from the National Institutes of Child Health and Human Development, Bethesda, MD.

2 To whom requests for reprints should be addressed.

Manuscript received 2 June 1986. Revision accepted 24 March 1987.




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M. Hayakawa, K. Takemoto, A. Nakayama, A. Saito, Y. Sato, M. Hasegawa, K. Ieda, and S. Mimura
An Animal Model of Intrauterine Growth Retardation Induced by Synthetic Thromboxane A2
Reproductive Sciences, December 1, 2006; 13(8): 566 - 572.
[Abstract] [PDF]




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