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Synergistic effect of isoflavone glycosides and fructooligosaccharides on postgastrectomy osteopenia in rats

机译:异黄酮苷和低聚果糖对大鼠胃切除术后骨质减少的协同作用

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摘要

Fructooligosaccharides stimulate the growth of Bifidobacteria, which cleave isoflavone glycosides to yield corresponding aglycones, and convert metabolites by enhancing enterohepatic recirculation of isoflavones in rats. In the present study, we determined the synergistic effect of dietary isoflavone glycosides and fructooligosaccharides on postgastrectomy osteopenia in rats. Nine-week-old male Sprague-Dawley rats were gastrectomized (n = 20) or sham operated, (control, n = 5) and then randomly assigned to 5 diet groups: sham-a purified diet control, gastrectomized-control, gastrectomized-isoflavone (0.2% isoflavone glycosides), gastrectomized-fructooligosaccharides (7.5% fructooligosaccharides), and isoflavone and fructooligosaccharides (0.2% isoflavone glycosides + 7.5% fructooligosaccharides). After 6 weeks, the rats were killed and biological samples were collected. In gastrectomized rats, fructooligosaccharides prevented femoral bone fragility, but isoflavone without fructooligosaccharides did not inhibit postgastrectomy osteopenia. Isoflavone and fructooligosaccharides exhibited a synergistic in the distal metaphyseal trabecular bone, indicated by peripheral quantitative computed tomography. Moreover, fructooligosaccharides increased calcium absorption and equol production from daidzein in gastrectomized rats. These results indicate that isoflavone alone did not inhibit postgastrectomy osteopenia, but the combination of isoflavone and fructooligosaccharides improved the inhibition of trabecular bone loss by increasing calcium absorption and equol production through fructooligosaccharides supplementation.
机译:低聚果糖刺激双歧杆菌的生长,该双歧杆菌可裂解异黄酮糖苷以生成相应的糖苷配基,并通过增强大鼠异黄酮的肠肝再循环来转化代谢产物。在本研究中,我们确定了膳食异黄酮糖苷和低聚果糖对大鼠胃切除术后骨质减少的协同作用。将9周大的Sprague-Dawley雄性大鼠进行胃直肠切除术(n = 20)或进行假手术(对照组,n = 5),然后随机分为5个饮食组:虚假-纯饮食控制,经胃切除术的对照,经胃切除术的-异黄酮(0.2%异黄酮糖苷),气化的低聚果糖(7.5%低聚果糖),异黄酮和低聚果糖(0.2%异黄酮糖苷+ 7.5%低聚果糖)。 6周后,处死大鼠并收集生物学样品。在经胃切除的大鼠中,低聚果糖可预防股骨的脆性,但是不含低聚果糖的异黄酮不能抑制胃切除术后的骨质减少。异黄酮和低聚果糖在远端干phy端小梁骨中表现出协同作用,通过外周定量计算机断层扫描显示。此外,低聚果糖在胃切除的大鼠中增加了黄豆苷元对钙的吸收和雌马酚的产生。这些结果表明,单独的异黄酮并不能抑制胃切除术后的骨质减少,但是异黄酮和低聚果糖的组合通过增加低聚果糖的补充而增加了钙的吸收和雌马酚的产生,从而改善了对小梁骨丢失的抑制作用。

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