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首页> 外文期刊>Journal of Applied Animal Research >In vitro binding capacity of organic (wheat bran and rice bran) and inorganic (perlite) sources for Mn, Zn, Cu, and Fe
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In vitro binding capacity of organic (wheat bran and rice bran) and inorganic (perlite) sources for Mn, Zn, Cu, and Fe

机译:有机(麦麸和米糠)和无机(珍珠岩)源对Mn,Zn,Cu和Fe的体外结合能力

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ABSTRACT This study was carried out to determination of in vitro binding capacity of wheat bran, rice bran, and perlite for Mn, Zn, Cu, and Fe. For this reason, wheat bran and rice bran were chemically analysed for moisture, protein, ash, ether extract, total carbohydrate, neutral detergent fibre, acid detergent fibre, acid detergent lignin, crude fibre, cellulose, hemicelluloses, phytic acid, Non-Fiber Carbohydrate, total dietary fibre, soluble dietary fibre, insoluble dietary fibre, DF?¢????+?¢????lignin, and endogenous minerals. Mineral binding capacity of wheat bran, rice bran, and perlite for Mn, Zn, Fe, and Cu under sequential simulated physiological conditions of the stomach, small intestine, and colon was investigated and compared. Rice bran showed the highest mineral-binding capacity in small intestine for Mn, Zn, and Cu. Among the minerals, Mn exhibited the lowest percentage of binding under the simulated physiological conditions of the small intestine and the highest percentage of removing occurred in the stomach for all of the treatments. Cereal bran's had an affinity for Cu > Zn > Fe > Mn. The amounts of minerals bound varied among samples. Rice bran showed the highest and perlite had lowest mineral-binding capacity in small intestine for Mn, Zn, and Cu.
机译:摘要本研究旨在测定麦麸,米糠和珍珠岩对Mn,Zn,Cu和Fe的体外结合能力。因此,对麦麸和米糠的水分,蛋白质,灰分,醚提取物,总碳水化合物,中性洗涤剂纤维,酸性洗涤剂纤维,酸性木质素,粗纤维,纤维素,半纤维素,植酸,非纤维进行了化学分析。碳水化合物,总膳食纤维,可溶性膳食纤维,不溶性膳食纤维,DF +木质素和内源性矿物质。在连续模拟的胃,小肠和结肠生理条件下,研究并比较了麦麸,米糠和珍珠岩对矿物质的锰,锌,铁和铜的结合能力。米糠在小肠中对锰,锌和铜的结合力最高。在所有矿物质中,锰在模拟的小肠生理条件下的结合率最低,而在所有治疗中胃中的去除率最高。谷物麸对Cu> Zn> Fe> Mn具有亲和力。结合的矿物质的量在样品之间变化。米糠在小肠中对锰,锌和铜的结合力最高,而珍珠岩的结合力最低。

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