母体强化平衡能量蛋白补充对母婴肠道微生物组的影响:MISAME-III随机对照试验的一项亚研究

Lishi Deng, Steff Taelman, Matthew R. Olm, Laéticia Céline Toé, Eva Balini, Lionel Ouédraogo, Yuri Bastos-Moreira, Alemayehu Argaw, Kokeb Tesfamariam, Erica D. Sonnenburg, Moctar Ouédraogo, Rasmané Ganaba, Wim van Criekinge, Patrick Kolsteren, Michiel Stock, Carl Lachat, Justin L. Sonnenburg, Trenton Dailey-Chwalibóg
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引用次数: 0

摘要

包括个体肠道微生物组在内的生物学途径是母体营养补充改善婴儿生长的潜在障碍。我们评估了平衡能量蛋白(BEP)补充剂在怀孕期间和哺乳前六个月对布基纳法索农村母亲及其婴儿肠道微生物组组成和功能的影响。我们的研究结果表明,补充BEP导致怀孕期间微生物群多样性显著增加。在妊娠中期,一种示波螺旋科物种的丰度显著下降,而产后,脆弱拟杆菌的丰度增加。我们确定了与BEP补充相关的一致的富集或耗尽的微生物途径,包括磷酸转移酶系统,这是细菌碳水化合物摄取的关键机制,在补充BEP的母亲所生的婴儿中表现出富集。尽管有这些观察结果,但与其他组学的复杂生物学联系需要进一步分析,以充分阐明潜在的综合生物学途径。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effects of Maternal Fortified Balanced Energy-Protein Supplementation on the Mother-Infant Gut Microbiome: A Sub-Study of the MISAME-III Randomized Controlled Trial
Biological pathways, including individual gut microbiome are potential barriers for maternal nutritional supplementation to improvement in infant growth. We evaluated the impact of balanced energy-protein (BEP) supplementation during pregnancy and the first six months of lactation on the composition and functionality of gut microbiome in mothers and their infants in rural Burkina Faso. Our findings reveal that BEP supplementation led to a significant increase in microbiome diversity during pregnancy. In the second trimester, there was a notable decrease in the abundance of an Oscillospiraceae species, while postpartum, the abundance of Bacteroides fragilis increased. We identified concerted enriched or depleted microbial pathways associated with BEP supplementation, including the phosphotransferase system, a critical mechanism for bacterial carbohydrates uptake, which exhibited enrichment in infants born to BEP-supplemented mothers. Despite these observations, the intricate biological connections with other omics necessitate further analysis to fully elucidate the underlying comprehensive biological pathways.
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