Liechty E A, Boyle D W, Moorehead H, Lee W H, Yang X L, Denne S C
Department of Pediatrics, The Herman B. Wells Center for Pediatric Research, Indiana University School of Medicine, Indianapolis, Indiana 46202-5210, USA.
Am J Physiol. 1999 Sep;277(3):E537-43. doi: 10.1152/ajpendo.1999.277.3.E537.
Insulin-like growth factor I (IGF-I) has anabolic effects and is thought to be important in fetal development. The present study was designed to determine the dose response of recombinant human (rh) IGF-I on ovine fetal glucose and amino acid kinetics. Chronically catheterized fetal lambs were studied at 122-127 days gestation. The kinetics of leucine, phenylalanine, and glucose were measured before and during the infusion of rhIGF-I. rhIGF-I was infused into the fetal inferior vena cava at low, medium, or high rates (9.9, 20.1, or 40.2 nmol/h, respectively). A stepwise increase in serum IGF-I was achieved (164 +/- 3, 222 +/- 7, and 275 +/- 5 ng/ml). Insulin concentrations were decreased at the medium and high rhIGF doses. The rate of appearance (Ra) of leucine and phenylalanine and leucine oxidation decreased. Phenylalanine appearance from protein breakdown was decreased, with a maximal suppression of 30% observed at the highest rate of infusion. Glucose Ra was increased at the medium and high doses; other aspects of glucose metabolism were unchanged. The change in both glucose Ra and suppression of proteolysis was significantly correlated to the rhIGF-I infusion rate. It is concluded that rhIGF-I exerts dose-related effects in the ovine fetus, increasing fetoplacental glucose turnover and causing significant suppression of both proteolysis and amino acid oxidation.
胰岛素样生长因子I(IGF-I)具有合成代谢作用,被认为在胎儿发育中起重要作用。本研究旨在确定重组人(rh)IGF-I对绵羊胎儿葡萄糖和氨基酸动力学的剂量反应。在妊娠122 - 127天对长期插管的胎儿羔羊进行研究。在输注rhIGF-I之前和期间测量亮氨酸、苯丙氨酸和葡萄糖的动力学。将rhIGF-I以低、中、高速率(分别为9.9、20.1或40.2 nmol/h)输注到胎儿下腔静脉中。血清IGF-I实现了逐步升高(分别为164±3、222±7和275±5 ng/ml)。在rhIGF中、高剂量时胰岛素浓度降低。亮氨酸和苯丙氨酸的出现率(Ra)以及亮氨酸氧化减少。蛋白质分解产生的苯丙氨酸出现减少,在最高输注速率下观察到最大抑制率为30%。中、高剂量时葡萄糖Ra增加;葡萄糖代谢的其他方面未改变。葡萄糖Ra的变化和蛋白水解的抑制与rhIGF-I输注速率显著相关。结论是,rhIGF-I在绵羊胎儿中发挥剂量相关作用,增加胎儿-胎盘葡萄糖周转率,并显著抑制蛋白水解和氨基酸氧化。