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Degradation of pectin in the caecum contributes to bioavailability of iron in rats

机译:盲肠果胶的降解有助于铁在大鼠体内的生物利用度

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The present study was designed to investigate the effect of pectin on Fe bioavailability in ileorectomisecl rats or caecectomised rats. In Expt 1, rats were divided into the following two groups: ileorectomisecl rats fed a fibre-free diet (FF diet) and ileorectomised rats fed a FF diet supplemented with 5% (w/w) pectin (pectin diet). Apparent Fe absorption in ileorectomised rats fed the pectin diet was significantly lower compared with ileorectomised rats fed the FF diet. In Expt 2, caecectomised rats and sham-operated rats were given one of the following diets for 3 weeks: diet containing ferrous iron (Fell diet), diet containing pectin at 50 g/kg diet (pectin diet) and diet containing a mixture of Fell and product prepared by the enzymatic degradation of pectin (Fell-OGA diet), which were presumed to be oligomers of galacturonic acid. The Fe content of these diets was 7.6, 8.1 and 7.7 mg/kg diet, respectively. The bioavailability of Fe in rats fed the Fell diet was not affected by caecectomy. In contrast, in rats fed the pectin diet, where Fe bound to pectin was the only Fe source, Hb gain and Hb regeneration efficiency were significantly decreased by caecectomy. The bioavailability of Fe from the Fell-OGA complex was not affected by caecectomy. These results suggest that Fe in pectin might be released by microbial degradation and subsequently made available for absorption in the large intestine, although pectin might decrease Fe absorption in the small intestine.
机译:本研究旨在研究果胶对回肠切除大鼠或切开切除的大鼠中铁的生物利用度的影响。在Expt 1中,将大鼠分为以下两组:饲喂无纤维饮食(FF饮食)的回肠切除大鼠和饲喂5%(w / w)果胶(果胶饮食)的FF饮食的切除肠的大鼠。与饲喂FF饲料的回肠切除大鼠相比,饲喂果胶饮食的回肠切除大鼠的表观铁吸收显着降低。在Expt 2中,为切除肠的大鼠和假手术的大鼠提供以下一种饮食,持续3周:含亚铁的饮食(掉食),含果胶的饮食50 g / kg饮食(果胶饮食)和含以下饮食的混合物:通过果胶的酶促降解(Fell-OGA饮食)制备的果皮和产品,推测果胶是半乳糖醛酸的低聚物。这些饮食中的铁含量分别为7.6、8.1和7.7 mg / kg饮食。饲喂Fell饮食的大鼠中Fe的生物利用度不受盲肠切除术的影响。相反,在饲喂果胶饮食的大鼠中,与果胶结合的铁是唯一的铁来源,盲肠切除术显着降低了血红蛋白的获得和血红蛋白的再生效率。 Fell-OGA复合物中Fe的生物利用度不受盲肠切除术的影响。这些结果表明,果胶中的铁可能通过微生物降解而释放,并随后可用于大肠吸收,尽管果胶可能会减少小肠中的铁吸收。

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