期刊论文详细信息
Bioscience of Microbiota, Food and Health
Evaluation of the Effects of Dietary Organic Germanium, Ge-132, and Raffinose Supplementation on Caecal Flora in Rats
Katsuyuki SATO1  Taizo NAGURA3  Masao OHNISHI2  Takashi NAKAMURA1 
[1] Asai Germanium Research Institute Co., Ltd.;Department of Bioresource Science, Obihiro University of Agriculture and Veterinary Medicine;Nippon Beet Sugar Mfg. Co., Ltd.
关键词: Ge-132;    organic germanium;    raffinose;    caecal flora;    Bifidobacterium;    β-glucuronidase;   
DOI  :  10.12938/bmfh.31.37
学科分类:生物科学(综合)
来源: Nihon Bifizusukin Senta / Japan Bifidus Foundation
PDF
【 摘 要 】

References(37)Poly-trans-[(2-carboxyethyl) germasesquioxane] (Ge-132) is the most common organic germanium compound. The ingestion of Ge-132 promotes bile secretion. We assessed the rat caecal characteristics after the administration of Ge-132 and raffinose, a prebiotic oligosaccharide, because both Ge-132 and some prebiotics can change the fecal color to yellow. We also compared the changes in the caecal flora caused by the two compounds. In addition, we evaluated the simultaneous administration of Ge-132 and raffinose and their effects on β-glucuronidase activity, which is known to be a factor related to colon cancer. Male Wistar rats (three weeks old) were given one of the following diets: 1) a control diet (control group), 2) a diet containing 0.05% Ge-132 (Ge-132 group), 3) a diet containing 5% raffinose (RAF group) or 4) a diet containing 0.05% Ge-132 + 5% raffinose (GeRAF group). The Bifidobacterium, Lactobacillus and total bacteria counts were significantly increased by the dietary raffinose, and Ge-132 did not suppress this increase. The raffinose intake increased caecal acetic acid production significantly. The activity of β-glucuronidase in the caecal contents was increased by dietary Ge-132, whereas dietary raffinose decreased the β-glucuronidase activity significantly. These results indicate that the simultaneous intake of dietary raffinose and Ge-132 does not inhibit the effects of either compound on intestinal fermentation and bile secretion. Additionally, the simultaneous intake of both raffinose and Ge-132 could abrogate the increase in β-glucuronidase activity induced by Ge-132 alone.

【 授权许可】

Unknown   

【 预 览 】
附件列表
Files Size Format View
RO201911300097500ZK.pdf 858KB PDF download
  文献评价指标  
  下载次数:5次 浏览次数:1次