4.7 Article

In vitro fermentation of polysaccharide from the seeds of Plantago asiatica L. by human fecal microbiota

期刊

FOOD HYDROCOLLOIDS
卷 33, 期 2, 页码 384-392

出版社

ELSEVIER SCI LTD
DOI: 10.1016/j.foodhyd.2013.04.006

关键词

Plantago asiatica L.; Polysaccharide; In vitro fermentation; Short-chain fatty acid; Enzyme activities; Carbohydrate consumption

资金

  1. Key Program of National Natural Science Foundation of China [31130041]
  2. National Natural Science Foundation of China [20802032, 21062012]
  3. National Key Technology R & D Program of China [2012BAD33B06, 2013AA102102]
  4. Program for New Century Excellent Talents in University [NCET-12-0749]
  5. Training Project of Young Scientists of Jiangxi Province (Stars of Jinggang)

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In vitro fermentation of the polysaccharide (PLCP, Mw - 1.90 x 10(6) Da) from seeds of Plantago asiatica L. and the contribution of its carbohydrates to the fermentation was investigated in this study. The polysaccharide was characterized by high contents of xylose, arabinose and glucuronic acid, and it was subjected to human fecal cultures to be fermented in vitro for 24 h. During fermentation, pH in fecal cultures decreased from 6.1 to 5.1 and the levels of total short-chain fatty acid (SCFA), acetic, propionic and n-butyric acids all significantly increased. Xylanase, arabinofuranosidase, xylosidase and glucuronidase activities were also improved. After 24 h incubation, 47.2 +/- 1.6% of total carbohydrate in polysaccharide, including 42.9 +/- 1.5% of arabinose, 53.2 +/- 1.6% of xylose and 76.4 +/- 1.2% of glucuronic acid, were consumed. In addition, relationship between carbohydrate consumption of the polysaccharide and SCFA production was also evaluated. It was found that the increase of acetic and n-butyric acid productions mainly resulted from the fermentation of glucuronic acid and xylose in polysaccharide, while the increase of propionic acid production was primarily due to the fermentation of arabinose and xylose. These results showed that the polysaccharide was physiologically active for human large bowel, and its carbohydrate composition determined its SCFA production. (c) 2013 Elsevier Ltd. All rights reserved.

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