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Published on: July 31, 2019
Short-Chain Inulin and Inulin Neoseries Oligosaccharides from Red Onions Enrich Beneficial Gut Taxa and Attenuate
Supachawadee Soyprasert1,2, Kritsakorn Saninjuk3,4, Nalapat Leangnim2,5
1Program in Biotechnology, Multidisciplinary and Interdisciplinary School, Chiang Mai University, Chiang Mai 50200, Thailand.
Abstract:
Prebiotic-mediated gut microbiota modulation is a promising approach for obesity management. Red onions have been identified as a potential source of inulin and inulin neoseries oligosaccharides. This study evaluated the in vivo effects of short-chain inulin and inulin neoseries oligosaccharides (SCIINOs) on the fecal microbiota of obese rats and assessed their potential role in obesity attenuation. Male Wistar rats were fed a high-fat diet (HFD) for 16 weeks to induce obesity, while control rats received a normal diet (ND). From weeks 16 to 24, HFD-fed obese rats were randomly assigned to four groups: SCIINOs at 0.5 g/day, SCIINOs at 1 g/day, atorvastatin (10 mg/kg/day), or no intervention. Obesity status was confirmed by increased body weight, total cholesterol (TC), low-density lipoprotein cholesterol (LDL-C), and higher food and energy intakes. SCIINOs were enzymatically hydrolyzed and purified by yeast treatment and chromatographic methods. After 8 weeks of SCIINO administration (1 g/day), the fecal microbiota was markedly enriched in Bifidobacterium and Allobaculum, whereas Blautia abundance significantly decreased. SCIINOs also increased taxa negatively associated with obesity-related parameters, including Dubosiella, Rothia, Parabacteroides, Eubacterium, and Coriobacteriaceae UCG-002, which correlated with reductions in body weight, triglycerides, TC, LDL-C, and fasting blood glucose, along with increased high-density lipoprotein cholesterol (HDL-C). In parallel, SCIINOs increased fecal acetate and butyrate levels, which was consistent with the enrichment of Bifidobacterium and butyrate-producing bacteria. Overall, SCIINOs derived from red onions show promise as a prebiotic candidate for obesity attenuation through selective microbiota modulation and enhanced short-chain fatty acid production.
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