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Plasma amino acids in pregnancy, placental intervillous space and preterm newborn infants

机译:妊娠,胎盘绒毛间隙和早产儿的血浆氨基酸

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Plasma amino acid levels have never been studied in the placental intervillous space of preterm gestations. Our objective was to determine the possible relationship between plasma amino acids of maternal venous blood (M), of the placental intervillous space (PIVS) and of the umbilical vein (UV) of preterm newborn infants. Plasma amino acid levels were analyzed by ion-exchange chromatography in M from 14 parturients and in the PIVS and UV of their preterm newborn infants. Mean gestational age was 34 ± 2 weeks, weight = 1827 ± 510 g, and all newborns were considered adequate for gestational age. The mean Apgar score was 8 and 9 at the first and fifth minutes. Plasma amino acid values were significantly lower in M than in PIVS (166%), except for aminobutyric acid. On average, plasma amino acid levels were significantly higher in UV than in M (107%) and were closer to PIVS than to M values, except for cystine and aminobutyric acid (P < 0.05). Comparison of the mean plasma amino acid concentrations in the UV of preterm to those of term newborn infants previously studied by our group showed no significant difference, except for proline (P < 0.05), preterm > term. These data suggest that the mechanisms of active amino acid transport are centralized in the syncytiotrophoblast, with their passage to the fetus being an active bidirectional process with asymmetric efflux. PIVS could be a reserve amino acid space for the protection of the fetal compartment from inadequate maternal amino acid variations.
机译:从未在早孕的胎盘绒毛间隙中研究血浆氨基酸水平。我们的目标是确定早产儿的母体静脉血(M),胎盘绒毛间隙(PIVS)和脐静脉(UV)的血浆氨基酸之间的可能关系。通过离子交换色谱法分析了14个产妇的早产儿的PI以及UV和UV中的血浆氨基酸水平。平均胎龄为34±2周,体重= 1827±510 g,所有新生儿均被认为适合胎龄。在第一分钟和第五分钟,平均Apgar分数分别为8和9。除氨基丁酸外,M中的血浆氨基酸值显着低于PIVS(166%)。平均而言,紫外线中的血浆氨基酸水平显着高于M(107%),并且比胱氨酸和氨基丁酸更接近PIVS,而不是M值(P <0.05)。本组先前研究的早产儿与足月新生儿的紫外线中平均血浆氨基酸浓度的比较显示,除脯氨酸(P <0.05),早产>足月外,没有显着差异。这些数据表明,活性氨基酸转运的机制集中在合体滋养层细胞中,它们向胎儿的传递是具有不对称外排的活性双向过程。 PIVS可能是一个储备氨基酸空间,可保护胎儿区室免受母体氨基酸变异不足的影响。

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