Effective Dose of Lactosucrose on Fecal Flora and Fecal Metabolites of Humans

  • HARA H
  • LI S
  • SASAKI M
  • et al.
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Abstract

Lactosucrose (4G-B-D-galactosylsucrose) was fermented in vitro by bifidobacteria and lactobacilli, and to a limited degree by the Bacteroides fragilis group, clostridia, eubacteria, and enterobacteriaceae. The effects of dietary lactosucrose on the fecal flora and fecal metab-olites were studied in eight healthy volunteers (20-23 years of age) who ingested 3 g of lactosucrose/day for 7 days followed by 6 g of lactosucrose/day for 7 consecutive days. During lactosucrose intake, the counts of bifidobacteria were increased significantly (p< 0.001), whereas the counts of clostridia, including Clostridium perfringens, and bacteroidaceae were decreased significantly (p<0.05) compared with the values before the intake. The total bacterial counts were decreased significantly (p< 0.05) on day 14 during the intake. The frequency of occurrence of lecithinase-negative clostridia was decreased significantly (p<0.05) when compared with the values before and after the intake. No detectable changes occurred in the counts of other organisms throughout the experimental periods. Fecal concentrations of ammonia , sulfide, phenol, ethylphenol, skatol and indole were decreased significantly (p< 0.05) during lactosucrose intake. Acetic acid and lactic acid were increased significantly (p< 0.05) during the intake. Fecal enzyme activity of B-glucuronidase was decreased significantly (p< 0.05) on day 14 of the intake. Serum very low density lipo-protein (VLDL) was increased significantly (p< 0.01) on day 14 during the intake. Mean fecal pH values decreased from 6.3 to 5.9, and mean water content increased 3.6% during the intake. Fecal weight was increased slightly during the intake. The results obtained showed that the effective dose of lactosucrose for all healthy adults is 3 g/day.

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HARA, H., LI, S.-T., SASAKI, M., MARUYAMA, T., TERADA, A., OGATA, Y., … MITSUOKA, T. (1994). Effective Dose of Lactosucrose on Fecal Flora and Fecal Metabolites of Humans. Bifidobacteria and Microflora, 13(2), 8–63. https://doi.org/10.12938/bifidus1982.13.2_8

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