Department of Neonatology, University Children's Hospital of Tübingen, Tübingen, Germany.
Neonatology. 2013;104(3):194-202. doi: 10.1159/000353161. Epub 2013 Aug 28.
Iron plays an essential role in various tissue functions, and hence the reliable assessment of iron nutrition status of preterm infants appears to be mandatory.
To summarize available data on cord blood concentrations of iron status parameters as surrogate reference ranges for preterm infants until term-equivalent age.
Review of the literature searching PubMed for cord blood values of hemoglobin, mean corpuscular volume, ferritin, soluble transferrin receptor, ferritin index, transferrin saturation, reticulocyte hemoglobin content, zinc protoporphyrin/heme ratio, and hepcidin and comparison with reference ranges established for adults.
Gestational age-specific cord blood concentration ranges at term were computed as weighted mean for hemoglobin [15.9 g/dl (13.3-18.4)], mean corpuscular volume [108.1 fl (97.8-118.5)] and transferrin saturation [61.2% (31.5-90.9)] and listed for ferritin, soluble transferrin receptor, ferritin index, zinc protoporphyrin/heme ratio, reticulocyte hemoglobin content and hepcidin. These surrogate reference ranges were markedly different from adult values.
Reference ranges of iron status parameters established for adults are probably not suitable to define iron status in preterm infants. If iron supplementation in preterm infants should be individually adjusted based on iron status parameters, it may be necessary to aim for cord blood concentration ranges to enable optimal growth and development.
铁在各种组织功能中起着至关重要的作用,因此可靠地评估早产儿的铁营养状况似乎是强制性的。
总结脐带血中铁状态参数的现有数据,作为早产儿直至胎龄相等年龄的替代参考范围。
检索PubMed 中的脐带血血红蛋白、平均红细胞体积、铁蛋白、可溶性转铁蛋白受体、铁蛋白指数、转铁蛋白饱和度、网织红细胞血红蛋白含量、锌原卟啉/血红素比值和铁调素值,并与成人建立的参考范围进行比较。
计算了胎龄特异性的脐带血浓度范围,足月时血红蛋白为[15.9 g/dl(13.3-18.4)]、平均红细胞体积为[108.1 fl(97.8-118.5)]和转铁蛋白饱和度为[61.2%(31.5-90.9)],并列出了铁蛋白、可溶性转铁蛋白受体、铁蛋白指数、锌原卟啉/血红素比值、网织红细胞血红蛋白含量和铁调素。这些替代参考范围与成人值明显不同。
为成人制定的铁状态参数参考范围可能不适合定义早产儿的铁状态。如果早产儿的铁补充应该根据铁状态参数进行个体化调整,那么可能需要针对脐带血浓度范围进行调整,以实现最佳的生长和发育。