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Does processing of a powder or in-bottle-sterilized liquid infant formula affect calcium bioavailability?

机译:粉末或瓶装灭菌液态婴儿配方食品的加工是否会影响钙的生物利用度?

摘要

Processing of infant formulas can induce Maillard reaction or lactose isomerization, among other changes. These reactions were evaluated with furosine and lactulose, respectively. Protein alteration was assessed with sodium dodecylsulfate-polyacrylamide gel electrophoresis. Repercussions on calcium bioavailability in powder and in-bottle-sterilized liquid infant formulas were studied. Lactulose, advanced Maillard-reaction products, and denatured proteins were higher in liquid infant formula. After in vitro digestion, soluble non-dialyzed calcium was significantly higher in liquid than in powder infant formula, but there were no differences in dialyzed insoluble calcium. Two-week-old rat pups drank the powder or liquid infant formula for 7 d. Food intake and final body weight were significantly lower in those fed liquid formula. Accordingly, the intake, apparent absorption, and retention of calcium were measured; the percentages of retention versus absorption and retention versus intake were significantly lower, although calcium digestibility (percentage of absorption versus intake) was higher. These results show that, although calcium in the sterilized infant formula was available in vitro and was absorbed more efficiently in vivo, it was poorly used by suckling rats. The low acceptability of this formula and the interaction of calcium with lactulose and advanced but absorbable Maillard-reaction products might explain the results. Thus, for calcium bioavailability, we recommend the powder instead of the conventional sterilized infant formula. Copyright © 2001 Elsevier Science Inc.
机译:婴儿配方食品的加工会引起美拉德反应或乳糖异构化等变化。这些反应分别用速尿和乳果糖评估。用十二烷基硫酸钠-聚丙烯酰胺凝胶电泳评估蛋白质的改变。研究了粉剂和瓶装灭菌液体婴儿配方食品中钙生物利用度的影响。液态婴儿配方食品中的乳果糖,高级美拉德反应产物和变性蛋白质更高。体外消化后,液体中的可溶性非透析钙明显高于婴儿配方奶粉,但透析后的不溶钙没有差异。两周大的幼仔喝了粉状或液态婴儿配方奶粉7天。用液体配方食品喂养的人的食物摄入量和最终体重显着降低。因此,测量了钙的摄入,表观吸收和保留。尽管钙的消化率(吸收率相对于摄入量的百分比)较高,但保留率相对于吸收量的百分比以及保留率相对于摄入量的百分比明显较低。这些结果表明,尽管无菌婴儿配方食品中的钙可在体外使用,并在体内更有效地吸收,但哺乳大鼠对钙的使用却很差。该配方的可接受性低,钙与乳果糖以及高级但可吸收的美拉德反应产物之间的相互作用可能解释了这一结果。因此,对于钙的生物利用度,我们建议使用该粉代替常规的无菌婴儿配方奶粉。版权所有©2001 Elsevier Science Inc.

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