首页> 美国卫生研究院文献>Journal of Animal Science >338 Effect of eicosapentaenoic acid and docosahexaenoic acid supplementation on placenta and fetal liver mRNA and fetal liver and brain fatty acids profile on early gestation in sheep
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338 Effect of eicosapentaenoic acid and docosahexaenoic acid supplementation on placenta and fetal liver mRNA and fetal liver and brain fatty acids profile on early gestation in sheep

机译:338赤皂酶苯甲酸和十二碳六烯酸对胎盘和胎儿肝mRNA的影响胎儿肝癌及胎儿肝脂肪酸曲线绵羊早期妊娠

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摘要

Polyunsaturated fatty acids supplementation in late gestation change offspring metabolism; however, their effect is not well known on early gestation in ewes. The objectives of this study were to determine the effect of dietary supplementation with eicosapentaenoic acid (EPA) and docosahexaenoic acid (DHA) in pregnant ewes on the concentration of EPA and DHA on fetal liver (FL) and fetal central nervous system (FCNS), and to evaluate the effect of the supplementation with EPA+ DHA on mRNA expression of genes associated with transport and metabolism of fatty acids (FA) in FL and placenta (caruncles and cotyledons). Twelve ewes (4 pens, three per pen) were blocked by pregnancy day. The ewes were assigned during the first 45 d of gestation to diet with an addition of 1.5% (dry matter bases) monounsaturated FA (MUFA) or EPA+DHA. A C-section was conducted at d 45 of gestation to collect FL, FCNS, caruncle and cotyledon. Data were analyzed using a mixed procedure (SAS). For the placenta mRNA concentration, a 2x2 factorial was used considering caruncle and cotyledon as the second main factor. Isomers of C18:1 (t6,8 and t12) increase (P < 0.05) in FL and FCNS with MUFA supplementation, fatty acids C20:3 (n-6), C20:3 (n-3), C22:1, C22:5 and C22:6 increase (P < 0.05) in FL and FCNS with EPA+DHA supplementation. In FL there was a tendency to increase for mRNA expression of FATP-1 (P = 0.10) with EPA+DHA supplementation, while mRNA concentration for LPL was greater (P = 0.02) for MUFA supplementation. In placenta DNMT3b and FFAR-4 showed a significant FA x tissue interaction (P < 0.05). These results suggest that FA supplementation during early gestation alters the FA profile in FL and FCNS and changed mRNA concentration of genes involved in the transport of FA and cell metabolism.
机译:多不饱和脂肪酸补充晚期妊娠改变后代代谢;然而,它们的效果在母羊的早期妊娠上都不是众所周知的。本研究的目的是确定膳食补充剂与eicosapentaeno的酸(EPA)和二十二碳六烯酸(DHA)对胎儿肝脏(FL)和胎儿中枢神经系统(FCN)浓度的孕产母羊浓度的影响,并评估补充对EPA + DHA对与脂肪酸(FA)在脂肪酸(FA)中脂肪酸(CARUNENTA和子叶)相关基因mRNA表达的影响。怀孕日封闭了十二母羊(4钢,每支3张三支)。在妊娠的第一个45 d期间分配EWE,以添加1.5%(干物质碱)单不饱和FA(MUFA)或EPA + DHA。在妊娠的D 45进行C段,以收集FL,FCNS,CARUNCLE和COTELEDON。使用混合过程(SAS)分析数据。对于胎盘mRNA浓度,将2x2阶乘考虑在第二个主要因素作为第二个主要因素时使用2x2阶乘。 C18:1(T6,8和T12)的异构体增加(P <0.05),用MUFA补充,脂肪酸C20:3(N-6),C20:3(N-3),C22:1, C22:5和C22:6在FL和FCN中增加(P <0.05),具有EPA + DHA补充。在流体中,对EPA + DHA补充的FATP-1(P = 0.10)的mRNA表达增加,而LPL的mRNA浓度较大(P = 0.02),用于MUFA补充。在胎盘DNMT3B和FFAR-4中显示出显着的FA X组织相互作用(P <0.05)。这些结果表明,早期妊娠期间的FA补充改变了FL和FCN中的FA谱,并改变了参与FA和细胞代谢的转运中的基因的mRNA浓度。

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