Holloway Alison C, Cuu Donald Q, Morrison Katherine M, Gerstein Hertzel C, Tarnopolsky Mark A
Reproductive Biology Division, Department of Obstetrics and Gynecology, McMaster University, RM HSC-3N52, 1200 Main Street West, Hamilton, ON, Canada.
Endocrine. 2007 Jun;31(3):254-9. doi: 10.1007/s12020-007-0043-6.
A wide variety of in utero insults are associated with an increased incidence of metabolic disorders in the offspring and in subsequent generations. We have shown that fetal and neonatal exposure to nicotine results in endocrine and metabolic changes in the offspring that are consistent with those observed in type 2 diabetes. This study examines whether fetal and neonatal exposure to nicotine has transgenerational effects in the F2 offspring. Female Wistar rats were given either saline or nicotine (1 mg/kg/d) during pregnancy and lactation to create saline- and nicotine-exposed female F1 progeny. These F1 females were then bred to produce F2 offspring. We examined glucose homeostasis, serum lipids and fat pad weights, mitochondrial enzyme activity in skeletal muscle and blood pressure in these F2 offspring between 13 and 15 weeks of age. Offspring of nicotine- versus saline-exposed mothers had elevated fasting serum insulin concentrations and an enhanced total insulin response to the glucose challenge. This apparent insulin resistance was unrelated to changes in skeletal muscle mitochondrial volume or activity. The offspring of nicotine-exposed mothers also had elevated blood pressure. These data demonstrate that adverse effects of fetal and neonatal exposure to nicotine can influence aspects of metabolic risk in subsequent generations.
子宫内的多种不良影响与后代及后续几代人代谢紊乱发病率的增加有关。我们已经表明,胎儿和新生儿接触尼古丁会导致后代出现内分泌和代谢变化,这些变化与2型糖尿病中观察到的变化一致。本研究探讨胎儿和新生儿接触尼古丁是否会对F2代后代产生跨代影响。在怀孕和哺乳期间,给雌性Wistar大鼠注射生理盐水或尼古丁(1毫克/千克/天),以产生接触生理盐水和尼古丁的雌性F1代后代。然后让这些F1代雌性大鼠繁殖产生F2代后代。我们在这些F2代后代13至15周龄时检查了它们的葡萄糖稳态、血脂和脂肪垫重量、骨骼肌中的线粒体酶活性以及血压。接触尼古丁的母亲的后代与接触生理盐水的母亲的后代相比,空腹血清胰岛素浓度升高,对葡萄糖刺激的总胰岛素反应增强。这种明显的胰岛素抵抗与骨骼肌线粒体体积或活性的变化无关。接触尼古丁的母亲的后代血压也升高。这些数据表明,胎儿和新生儿接触尼古丁的不良影响会影响后代代谢风险的各个方面。