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首页> 外文期刊>The Journal of Physiology >Skeletal muscle protein accretion rates and hindlimb growth are reduced in late gestation intrauterine growth-restricted fetal sheep
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Skeletal muscle protein accretion rates and hindlimb growth are reduced in late gestation intrauterine growth-restricted fetal sheep

机译:骨骼肌蛋白增生率和后肢生长在晚期妊娠宫内生长受限制的胎儿绵羊减少

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Reduced skeletal muscle mass in the fetus with intrauterine growth restriction (IUGR) persists into adulthood and may contribute to increased metabolic disease risk. To determine how placental insufficiency with reduced oxygen and nutrient supply to the fetus affects hindlimb blood flow, substrate uptake and protein accretion rates in skeletal muscle, late gestation control (CON) (n = 8) and IUGR (n = 13) fetal sheep were catheterized with aortic and femoral catheters and a flow transducer around the external iliac artery. Muscle protein kinetic rates were measured using isotopic tracers. Hindlimb weight, linear growth rate, muscle protein accretion rate and fractional synthetic rate were lower in IUGR compared to CON (P 0.05). Absolute hindlimb blood flow was reduced in IUGR (IUGR: 32.9 +/- 5.6 ml min(-1); CON: 60.9 +/- 6.5 ml min(-1); P 0.005), although flow normalized to hindlimb weight was similar between groups. Hindlimb oxygen consumption rate was lower in IUGR (IUGR: 10.4 +/- 1.4 mu mol min-1 100 g(-1); CON: 14.7 +/- 1.3 mu mol min-1 100 g(-1); P 0.05). Hindlimb glucose uptake and lactate output rates were similar between groups, whereas amino acid uptake was lower in IUGR (IUGR: 1.3 +/- 0.5 mu mol min(-1) 100 g(-1); CON: 2.9 +/- 0.2 mu mol min(-1) 100 g(-1); P 0.05). Blood O-2 saturation (r(2) = 0.80, P 0.0001) and plasma glucose (r(2) = 0.68, P 0.0001), insulin (r(2) = 0.40, P 0.005) and insulin-like growth factor (IGF)-1 (r(2) = 0.80, P 0.0001) were positively associated and norepinephrine (r(2) = 0.59, P 0.0001) was negatively associated with hindlimb weight. Slower hindlimb linear growth and muscle protein synthesis rates match reduced hindlimb blood flow and oxygen consumption rates in the IUGR fetus. Metabolic adaptations to slow hindlimb growth are probably hormonally-mediated by mechanisms that include increased fetal norepinephrine and reduced IGF-1 and insulin.
机译:通过宫内生长限制(IUGR)将胎儿肌肉肿块降低(IUGR)持续到成年期并且可能有助于增加代谢疾病风险。为了确定如何对胎儿的氧气和营养供应降低的胎盘功能不全,影响骨骼肌中的后肢血流量,底物吸收和蛋白质增生率,晚期妊娠对照(CON)(N = 8)和IUGR(n = 13)胎儿绵羊是导管与主动脉和股骨导管和外部髂动脉周围的流动传感器。使用同位素示踪剂测量肌肉蛋白质动力学率。与CON(P <0.05)相比,IUGR中,IUGR中的后肢体重,线性生长速率,肌肉蛋白质增生率和分数合成率较低。 IUGR中的绝对后肢血流(IUGR:32.9 +/- 5.6mL min(-1); CON:60.9 +/- 6.5 ml min(-1); p <0.005),但流量归一化为后肢体重在组之间类似。 IUGR中的后肢氧气消耗率较低(IUGR:10.4 +/- 1.4 mm mol min-1 100g(-1); CON:14.7 +/- 1.3 mm mol min-1 100g(-1); p& 0.05)。后肢葡萄糖摄取和乳酸输出率在基团之间相似,而IUGR中氨基酸摄取较低(IUGR:1.3 +/- 0.5 mm mol min(-1)100g(-1); CON:2.9 +/-0.2μm mol min(-1)100g(-1); p <0.05)。血液O-2饱和度(R(2)= 0.80,P <0.0001)和等离子体葡萄糖(R(2)= 0.68,P <0.0001),胰岛素(R(2)= 0.40,P <0.005)和胰岛素样生长因子(IGF)-1(r(2)= 0.80,p <0.0001)是正相关的,并且与后肢体重呈负相关的去甲肾上腺素(R(2)= 0.59,p <0.0001)。较慢的后肢线性生长和肌肉蛋白质合成率匹配IugR胎儿中的后肢血流和氧气消耗率。对缓慢后肢生长的代谢适应可能是通过包括增加的胎儿脑肾上腺素和降低的IGF-1和胰岛素的机​​制介导的机制介导的。

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