Lactiplantibacillus plantarum dfa1 Outperforms Enterococcus faecium dfa1 on Anti-Obesity in High Fat-Induced Obesity Mice Possibly through the Differences in Gut Dysbiosis Attenuation, despite the Similar Anti-Inflammatory Properties

尽管具有相似的抗炎特性,但乳酸杆菌(Lactiplantibacillus plantarum)dfa1 在高脂诱导肥胖小鼠模型中抗肥胖效果优于粪肠球菌(Enterococcus faecium)dfa1,这可能是由于二者在缓解肠道菌群失调方面存在差异所致。

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作者:Thunnicha Ondee ,Krit Pongpirul ,Kantima Janchot ,Suthicha Kanacharoen ,Thanapat Lertmongkolaksorn ,Lampet Wongsaroj ,Naraporn Somboonna ,Natharin Ngamwongsatit ,Asada Leelahavanichkul

Abstract

Fat reduction and anti-inflammation are commonly claimed properties of probiotics. Lactiplantibacillus plantarum and Enterococcus faecium were tested in high fat-induced obesity mice and in vitro experiments. After 16 weeks of probiotics, L. plantarum dfa1 outperforms E. faecium dfa1 on the anti-obesity property as indicated by body weight, regional fat accumulation, serum cholesterol, inflammatory cytokines (in blood and colon tissue), and gut barrier defect (FITC-dextran assay). With fecal microbiome analysis, L. plantarum dfa1 but not E. faecium dfa1 reduced fecal abundance of pathogenic Proteobacteria without an alteration in total Gram-negative bacteria when compared with non-probiotics obese mice. With palmitic acid induction, the condition media from both probiotics similarly attenuated supernatant IL-8, improved enterocyte integrity and down-regulated cholesterol absorption-associated genes in Caco-2 cell (an enterocyte cell line) and reduced supernatant cytokines (TNF-α and IL-6) with normalization of cell energy status (extracellular flux analysis) in bone-marrow-derived macrophages. Due to the anti-inflammatory effect of the condition media of both probiotics on palmitic acid-activated enterocytes was neutralized by amylase, the active anti-inflammatory molecules might, partly, be exopolysaccharides. As L. plantarum dfa1 out-performed E. faecium dfa1 in anti-obesity property, possibly through the reduced fecal Proteobacteria, with a similar anti-inflammatory exopolysaccharide; L. plantarum is a potentially better option for anti-obesity than E. faecium. Keywords: Enterococcus faecium; Lactiplantibacillus plantarum; Lactobacillus plantarum; dysbiosis; high fat diet; obesity; probiotics.

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