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植酸钠对去卵巢大鼠骨特性的影响。

Effect of tetracalcium dimagnesium phytate on bone characteristics in ovariectomized rats.

机构信息

Laboratory of Renal Lithiasis Research, University Institute of Health Sciences Research, University of Balearic Islands, Madrid, Spain.

出版信息

J Med Food. 2010 Dec;13(6):1301-6. doi: 10.1089/jmf.2009.0152.

Abstract

The aim was to evaluate the influence of dietary Ca-Mg-phytate consumption on the bone characteristics of ovariectomized rats, an animal model for postmenopausal osteoporosis. Twenty ovariectomized female Wistar rats were randomly assigned to two groups fed, respectively, with a non-phytate diet (AIN-76A) or the same diet enriched with 1% phytate (as the calcium magnesium salt, phytin). After 12 weeks of feeding the rats were sacrificed, and both femoral bones and L4 vertebra were removed from each rat. Bone mass, length, width, volume, and mineral density were measured, and the phosphorus, calcium, magnesium, and zinc contents of bones were determined. Deoxypyridinoline (a bone resorption marker) was measured in urine, and osteocalcin (a bone formation marker) was measured in serum. The calcium and phosphorus contents and bone mineral density were significantly higher in both femoral bones and L4 vertebra for phytate-treated rats in comparison to rats in the non-phytate group. Deoxypyridinoline was significantly increased in rats in the non-phytate treatment group. Ca-Mg-phytate consumption reduces bone mineral density loss due to estrogen deficiency. Thus, phytate exhibits effects similar to those of bisphosphonates on bone resorption and may be of use in the primary prevention of osteoporosis if larger studies in humans confirm these findings.

摘要

目的是评估膳食钙镁植酸盐的摄入对去卵巢大鼠(绝经后骨质疏松症的动物模型)骨骼特性的影响。将 20 只去卵巢雌性 Wistar 大鼠随机分为两组,分别喂食不含植酸盐的饮食(AIN-76A)或用 1%植酸盐(植酸钙镁盐)强化的相同饮食。喂养 12 周后,处死大鼠,从每只大鼠中取出股骨和 L4 椎骨。测量骨量、长度、宽度、体积和矿物质密度,并测定骨中的磷、钙、镁和锌含量。测定尿液中的脱氧吡啶啉(骨吸收标志物)和血清中的骨钙素(骨形成标志物)。与非植酸盐组相比,植酸盐处理组大鼠的股骨和 L4 椎骨的钙和磷含量以及骨矿物质密度均显著更高。非植酸盐处理组大鼠的脱氧吡啶啉显著增加。钙镁植酸盐的摄入可减少因雌激素缺乏导致的骨矿物质密度丢失。因此,如果更大规模的人体研究证实了这些发现,植酸盐对骨吸收的作用类似于双膦酸盐,可用于骨质疏松症的一级预防。

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