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The challenge of nutritional profiling of a protein‐free feed module for children on low protein tube feeds with organic acidaemias

机译:用有机酸血症对儿童提供无蛋白质饲料模块的蛋白质饲料模块营养谱的挑战

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Abstract Background Enteral tube feeding for children with organic acidaemias ( OA ) is recommended. Protein restriction, providing minimum safe levels of protein intake, is advocated. Standard paediatric tube feeding formulae provide more than the minimum safe protein requirements and are unsuitable in OA without modification. Modified paediatric enteral feeds consist of several modular ingredients. The aim of this prospective longitudinal interventional study was to assess the efficacy of a premeasured novel protein‐free module developed for children aged over 12 months compared to conventional practice. Methods In total, 15 children with OA (11.6–31 kg) needing enteral feeding were recruited. The protein‐free module, from either a protein‐free infant feed or modular ingredients, was replaced by the study feed. To ensure metabolic stability, energy and protein intake were unchanged. Dietary intake, anthropometry and nutritional biochemistry were recorded at baseline and week 26. Results Dietary intakes of magnesium ( P = 0.02), sodium ( P = 0.005), vitamin D ( P = 0.04), docosahexaenoic acid ( P = 0.01) and arachidonic acid ( P = 0.001) significantly improved; plasma selenium ( P = 0.002) and whole blood glutathione peroxidase ( P = 0.02) significantly increased. Feed preparation accuracy as measured by composition analysis showed consistent errors both in pre‐ and study feeds. Conclusions A protein‐free module improved nutritional intake and biochemistry, although feed preparation errors remained a common finding
机译:抽象背景喂养与有机天赋(oa)的孩子的肠道管。倡导蛋白质限制,提供最低安全水平的蛋白质摄入量。标准小儿管饲料配方提供了超过最低安全蛋白质的要求,并且在没有修饰的情况下在OA中不合适。改性的儿科肠内饲料包括几种模块化成分。这项前瞻性纵向介入研究的目的是评估与常规实践相比,为12个月内为12个月的儿童开发的预先测量的新型蛋白质模块的疗效。招募了总共15例需要肠内喂养的15名儿童(11.6-31千克)。从无蛋白质婴儿饲料或模块化成分的无蛋白质模块被研究进料所取代。为了确保代谢稳定性,能量和蛋白质摄入量不变。在基线和第26周记录膳食摄入量,人体测量术和营养生物化学。结果镁膳食摄入量(P = 0.02),钠(P = 0.005),维生素D(P = 0.04),二十二碳六烯酸(P = 0.01)和arachidonic酸(p = 0.001)显着改善;血浆硒(P = 0.002)和全血谷胱甘肽过氧化物酶(P = 0.02)显着增加。通过成分分析测量的饲料制备精度显示在预先和研究饲料中的一致误差。结论无蛋白质的模块改善了营养摄入和生物化学,尽管饲料制备误差仍然是常见的发现

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