首页> 外文期刊>The American Journal of Clinical Nutrition: Official Journal of the American Society for Clinical Nutrition >A combination of prebiotic short- and long-chain inulin-type fructans enhances calcium absorption and bone mineralization in young adolescents
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A combination of prebiotic short- and long-chain inulin-type fructans enhances calcium absorption and bone mineralization in young adolescents

机译:益生元短链和长链菊粉型果聚糖的组合可增强青少年的钙吸收和骨矿化

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BACKGROUND: Short-term studies in adolescents have generally shown an enhancement of calcium absorption by inulin-type fructans (prebiotics). Results have been inconsistent; however, and no studies have been conducted to determine whether this effect persists with long-term use. OBJECTIVE: The objective was to assess the effects on calcium absorption and bone mineral accretion after 8 wk and 1 y of supplementation with an inulin-type fructan. DESIGN: Pubertal adolescents were randomly assigned to receive 8 g/d of a mixed short and long degree of polymerization inulin-type fructan product (fructan group) or maltodextrin placebo (control group). Bone mineral content and bone mineral density were measured before randomization and after 1 y. Calcium absorption was measured with the use of stable isotopes at baseline and 8 wk and 1 y after supplementation. Polymorphisms of the Fok1 vitamin D receptor gene were determined. RESULTS: Calcium absorption was significantly greater in the fructan group than in the control group at 8 wk (difference: 8.5 +/- 1.6%; P < 0.001) and at 1 y (difference: 5.9 +/- 2.8%; P = 0.04). An interaction with Fok1 genotype was present such that subjects with an ff genotype had the least initial response to fructan. After 1 y, the fructan group had a greater increment in both whole-body bone mineral content (difference: 35 +/- 16 g; P = 0.03) and whole-body bone mineral density (difference: 0.015 +/- 0.004 g/cm(2); P = 0.01) than did the control group. CONCLUSION: Daily consumption of a combination of prebiotic short- and long-chain inulin-type fructans significantly increases calcium absorption and enhances bone mineralization during pubertal growth. Effects of dietary factors on calcium absorption may be modulated by genetic factors, including specific vitamin D receptor gene polymorphisms.
机译:背景:青少年的短期研究通常显示菊粉型果聚糖(益生元)可增强钙的吸收。结果不一致。但是,尚未进行任何研究来确定长期使用后这种效果是否持续。目的:评估补充菊粉型果聚糖8周和1年后对钙吸收和骨矿物质吸收的影响。设计:青春期青少年被随机分配接受8 g / d的混合短期和长期聚合度菊粉型果聚糖产品(果聚糖组)或麦芽糖糊精安慰剂(对照组)。在随机分组之前和1年后测量骨矿物质含量和骨矿物质密度。在基线,补充后8 wk和1 y使用稳定同位素测量钙吸收。确定了Fok1维生素D受体基因的多态性。结果:果聚糖组的钙吸收在8 wk(差异:8.5 +/- 1.6%; P <0.001)和1 y(差异:5.9 +/- 2.8%; P = 0.04)时明显高于对照组。 )。存在与Fok1基因型的相互作用,使得具有ff基因型的受试者对果聚糖的初始反应最少。 1年后,果聚糖组的全身骨矿物质含量(差异:35 +/- 16 g; P = 0.03)和全身骨矿物质密度(差异:0.015 +/- 0.004 g / cm(2); P = 0.01)比对照组高。结论:每天摄入益生元短链和长链菊粉型果聚糖组合可显着增加青春期生长过程中的钙吸收并增强骨骼矿化。饮食因素对钙吸收的影响可能受遗传因素调节,包括特定的维生素D受体基因多态性。

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