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麦芽仿生酸可增强大鼠肠道对钙和镁的吸收。

Maltobionic acid enhances intestinal absorption of calcium and magnesium in rats.

作者信息

Suehiro Daiki, Okada Misato, Fukami Ken, Nakagawa Tomoyuki, Hayakawa Takashi

机构信息

a Faculty of Life Science and Resources, Graduate School of Applied Biological Sciences, Gifu University , Gifu , Japan.

b San-ei Sucrochemical Co., Ltd ., Chita , Japan.

出版信息

Biosci Biotechnol Biochem. 2019 Sep;83(9):1766-1773. doi: 10.1080/09168451.2019.1611411. Epub 2019 May 6.

Abstract

In Experiment 1, the effects of calcium maltobionate (MBCa) on calcium and magnesium absorption were examined using male rats. Four diets were designed in which 25%, 50%, and 100% of calcium carbonate (CaCO, Control) were substituted with MBCa and were designated as MBCa-25, MBCa-50, and MBCa-100, respectively. The cecal concentration of short-chain fatty acids was significantly higher in groups MBCa-50 and MBCa-100; however, pH of cecal contents did not significantly differ among the groups. Retention rates of calcium and magnesium were significantly higher in all MBCa groups as compared to the Control. In Experiment 2, the efficiency of calcium absorption was compared using everted sacs of jejunum and ileum with CaCO and MBCa as calcium sources. More calcium from MBCa was absorbed as the concentration of calcium increased in comparison to CaCO. It was concluded that MBCa is a better calcium source than CaCO in terms of both calcium retention and absorption. ANOVA: analysis of variance; Ca: Calcium; CaCO calcium carbonate; ICP-OES: Inductivity coupled plasma optical emission spectrometer; Mg: magnesium; MBCa: calcium maltobionate; OCPC: o-cresolphthalein complexone; SCFAs: short-chain fatty acids; SE: standard error; TRPM6: transient receptor potential melastatin 6.

摘要

在实验1中,使用雄性大鼠研究了麦芽酮酸钙(MBCa)对钙和镁吸收的影响。设计了四种日粮,其中分别用MBCa替代25%、50%和100%的碳酸钙(CaCO₃,对照),并分别命名为MBCa - 25、MBCa - 50和MBCa - 100。MBCa - 50组和MBCa - 100组的盲肠短链脂肪酸浓度显著更高;然而,各组盲肠内容物的pH值没有显著差异。与对照组相比,所有MBCa组的钙和镁保留率均显著更高。在实验2中,以CaCO₃和MBCa作为钙源,使用空肠和回肠外翻肠囊比较钙的吸收效率。与CaCO₃相比,随着钙浓度的增加,MBCa中更多的钙被吸收。得出的结论是,就钙的保留和吸收而言,MBCa是比CaCO₃更好的钙源。ANOVA:方差分析;Ca:钙;CaCO₃:碳酸钙;ICP - OES:电感耦合等离子体发射光谱仪;Mg:镁;MBCa:麦芽酮酸钙;OCPC:邻甲酚酞络合酮;SCFAs:短链脂肪酸;SE:标准误差;TRPM6:瞬时受体电位褪黑素6 。

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