The Role of Milk Components, Pro-, Pre-, and Synbiotic Foods in Calcium Absorption and Bone Health Maintenance

益生元 骨质疏松症 峰值骨量 食品科学 健骨 乳糖不耐受 乳糖 人口 聚葡萄糖 化学 骨矿物 吸收(声学) 骨量 骨重建 骨密度 钙代谢 医学 健康福利 内分泌学 胃肠道 骨生长 生理学 发酵 防御工事 矿物吸收 摄入 内科学 肠道菌群 生物 生物技术
作者
Bolaji Lilian Ilesanmi-Oyelere,Marlena C. Kruger
出处
期刊:Frontiers in Nutrition [Frontiers Media]
卷期号:7: 578702-578702 被引量:38
标识
DOI:10.3389/fnut.2020.578702
摘要

Increasing peak bone mass during adolescence and reducing bone loss in later life are two approaches to reduce the risk of osteoporosis with aging. Osteoporosis affects a large proportion of the elderly population worldwide and the incidence is increasing. Milk consumption is an accepted strategy in building peak bone mass and therefore may reduce the risk of osteoporosis. In childhood calcium, phosphorous, and growth factors are the important components to support bone growth but in adults the positive influence on bone density/maintenance may also be due to other bioactive proteins/peptides or lipids in milk acting directly in the gastrointestinal tract (GIT). Lactose has been known to increase calcium absorption; galactooligosaccharides (GOS) are derived from lactose and are non-digestible oligosaccharides. They have been shown to improve mineral balance and bone properties as well as causing increases in bifidobacteria in the gut, therefore a prebiotic effect. Supplementation with fortified milk and dairy products with added prebiotics, increased both calcium and magnesium absorption and caused some modulation of gut microbiota in animals and humans. Fermented milk is now also recognized to contain highly active components such as vitamins, peptides, oligosaccharides, and organic acids. In this review, the role of milk and milk components in improving calcium absorption and thereby supporting bone health is discussed. In addition, some reference is made to the significance of combining the inherent beneficial components from milk with fortificants/nutrients that will support bone health through adulthood. Novel data suggesting differences in diversity of the microbiota between healthy and osteoporotic women are provided.
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