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Milk Fat Globule Membrane Supplementation in Formula-fed Rat Pups Improves Reflex Development and May Alter Brain Lipid Composition

机译:配方奶喂养的大鼠幼崽中的乳脂球膜补充剂可改善反射发育并可能改变脑脂质组成

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摘要

Human milk contains nutritional, immunoprotective and developmental components that support optimal infant growth and development. The milk fat globule membrane (MFGM) is one unique component, comprised of a tri-layer of polar lipids, glycolipids, and proteins, that may be important for brain development. MFGM is not present in most infant formulas. We tested the effects of bovine MFGM supplementation on reflex development and on brain lipid and metabolite composition in rats using the “pup in a cup” model. From postnatal d5 to d18, rats received either formula supplemented with MFGM or a standard formula without MFGM; a group of mother-reared animals was used as reference/control condition. Body and brain weights did not differ between groups. MFGM supplementation reduced the gap in maturation age between mother-reared and standard formula-fed groups for the ear and eyelid twitch, negative geotaxis and cliff avoidance reflexes. Statistically significant differences in brain phospholipid and metabolite composition were found at d13 and/or d18 between mother-reared and standard formula-fed groups, including a higher phosphatidylcholine:phosphatidylethanolamine ratio, and higher phosphatidylserine, glycerol-3 phosphate, and glutamine in mother-reared compared to formula-fed pups. Adding MFGM to formula narrowed these differences. Our study demonstrates that addition of bovine MFGM to formula promotes reflex development and alters brain phospholipid and metabolite composition. Changes in brain lipid metabolism and their potential functional implications for neurodevelopment need to be further investigated in future studies.
机译:人乳包含营养,免疫保护和发育成分,可支持婴儿的最佳生长发育。乳脂小球膜(MFGM)是一种独特的成分,由三层极性脂质,糖脂和蛋白质组成,对大脑发育可能很重要。大多数婴儿配方食品中都不存在MFGM。我们使用“杯中小犬”模型测试了补充牛MFGM对大鼠反射发育以及脑脂质和代谢产物组成的影响。从出生后第5天到第18天,大鼠接受补充MFGM的配方食品或不含MFGM的标准配方食品;一组母亲饲养的动物用作参考/对照条件。两组之间的体重和大脑重量没有差异。 MFGM补充剂减少了母亲和标准配方奶喂养组之间的耳朵和眼睑抽动,负地轴方向和避壁反射的成熟年龄差距。母亲喂养的和标准配方喂养的组之间在d13和/或d18时发现脑磷脂和代谢物组成有统计学上的显着差异,包括较高的磷脂酰胆碱:磷脂酰乙醇胺比率,以及较高的磷脂酰丝氨酸,-3甘油甘油和谷氨酰胺。与配方喂养的幼犬相比饲养。在配方中添加MFGM可以缩小这些差异。我们的研究表明,向配方中添加牛MFGM可以促进反射发育并改变脑磷脂和代谢产物的组成。脑脂质代谢的变化及其对神经发育的潜在功能影响需要在未来的研究中进一步研究。

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