Nutrition and health value of sialic acid in early life

Abstract Sialic acid (SA) is a naturally occurring derivative of nine-carbon monosaccharides that are typically present as oligosaccharides, glycoproteins, or glycolipids in the blood during pregnancy and in breast milk. Hepatic synthesis of SA occurs from the fetal period to 6 months after birth; therefore, exogenous SA is essential for early life growth and development. This review examines the nutritional requirements for various forms of SA in early life, considering its content in the maternal serum, breast milk, and supplementary infant foods. Additionally, it examines the synthesis and metabolism of SA, its roles in the brain and intestinal development, immune system maturation, and its efficacy in preventing and managing preterm birth and related conditions. Finally, it highlights crucial research in SA nutrition in early life to provide a scientific basis for the use of SA in infant formulas, maternal food, and medical settings.

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Publication Details

Journal
Food Science and Human Wellness
Published
2026-09-29
DOI
https://doi.org/10.26599/fshw.2026.9251250
Primary Topic
Infant Nutrition and Health
Type
article
Field-Weighted Citation Impact
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Nutrition and health value of sialic acid in early life

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Food Science and Human Wellness
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Nutrition and health value of sialic acid in early life

Weicang Qiao, Yuying Yuan, 满朝新, Baoyu Yang, Lijun Chen, Yanpin Liu, Junying Zhao, Qian Liu, Quansheng Zhu, Zhenzhen Zhang
article en

Abstract

Abstract Sialic acid (SA) is a naturally occurring derivative of nine-carbon monosaccharides that are typically present as oligosaccharides, glycoproteins, or glycolipids in the blood during pregnancy and in breast milk. Hepatic synthesis of SA occurs from the fetal period to 6 months after birth; therefore, exogenous SA is essential for early life growth and development. This review examines the nutritional requirements for various forms of SA in early life, considering its content in the maternal serum, breast milk, and supplementary infant foods. Additionally, it examines the synthesis and metabolism of SA, its roles in the brain and intestinal development, immune system maturation, and its efficacy in preventing and managing preterm birth and related conditions. Finally, it highlights crucial research in SA nutrition in early life to provide a scientific basis for the use of SA in infant formulas, maternal food, and medical settings.

Food Science and Human Wellness
Zero hunger
Openalex Percentile: Top 13%
Infant Nutrition and Health
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