Department of Pediatrics, University Medical Center Groningen, University of Groningen, 9713 BN Groningen, The Netherlands.
Pediatr Res. 2010 Jul;68(1):10-5. doi: 10.1203/PDR.0b013e3181e1219b.
Intrauterine malnutrition is associated with increased susceptibility to chronic diseases in adulthood. Growth-restricted infants display a less favorable lipid profile already shortly postnatal. Maternal low protein diet (LPD) during gestation is a well-defined model of fetal programming in rodents and affects lipid metabolism of the offspring. Effects of LPD throughout gestation on physiologic relevant parameters of lipid metabolism are unclear. We aimed to determine effects of LPD on maternal-fetal cholesterol fluxes and fetal lipid synthesis in mice. Pregnant mice (dams) were fed with a control (18% casein) or an LPD (9% casein) from E0.5 onward. We quantified maternal-fetal cholesterol transport and maternal cholesterol absorption at E19.5 using stable isotopes. We determined fetal lipid biosynthesis at E19.5, after administration of (1-C)-acetate from E17.5 onward. LPD did not change fetal and maternal plasma and hepatic concentrations of cholesterol and triglycerides. LPD affected neither the magnitudes of maternal-fetal cholesterol flux, maternal cholesterol absorption, nor fetal synthesis of cholesterol and palmitate (both groups, approximately 14% and approximately 13%, respectively). We conclude that LPD throughout gestation in mice does not affect maternal-fetal cholesterol transport, fetal cholesterol or fatty acid synthesis, indicating that programming effects of LPD are not mediated by short-term changes in maternal-fetal lipid metabolism.
子宫内营养不良与成年后患慢性疾病的易感性增加有关。生长受限的婴儿在出生后不久就表现出不太有利的脂质谱。孕期母体低蛋白饮食(LPD)是啮齿动物胎儿编程的明确模型,会影响后代的脂质代谢。LPD 对整个孕期与脂质代谢相关的生理相关参数的影响尚不清楚。我们旨在确定 LPD 对小鼠母胎胆固醇通量和胎儿脂质合成的影响。从 E0.5 开始,将怀孕的老鼠(母鼠)喂食对照(18%酪蛋白)或 LPD(9%酪蛋白)。我们使用稳定同位素在 E19.5 时量化母胎胆固醇转运和母体胆固醇吸收。从 E17.5 开始,我们在(1-C)-乙酸给药后确定 E19.5 的胎儿脂质生物合成。LPD 并未改变胎儿和母体血浆以及肝脏中的胆固醇和甘油三酯浓度。LPD 既不影响母胎胆固醇通量的幅度,也不影响母体胆固醇吸收或胎儿胆固醇和棕榈酸的合成(两组分别约为 14%和约 13%)。我们得出结论,LPD 在整个孕期对小鼠的母胎胆固醇转运、胎儿胆固醇或脂肪酸合成没有影响,表明 LPD 的编程作用不是通过母胎脂质代谢的短期变化介导的。