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Lactobacillus plantarum S9 alleviates lipid profile, insulin resistance, and inflammation in high-fat diet-induced metabolic syndrome rats
by
Shen, Yunjiao
, Wang, Yunlong
, Wang, Lei
, Li, Shengyu
, Zhao, Lei
, Zhang, Lin
, Zhao, Zijian
in
631/326
/ 692/699
/ Alanine
/ Alanine transaminase
/ Aspartate transaminase
/ Blood glucose
/ Body weight
/ Body weight gain
/ High fat diet
/ Humanities and Social Sciences
/ Inflammation
/ Insulin
/ Insulin resistance
/ Lactobacillus plantarum
/ Lipids
/ Lipopolysaccharides
/ Liver
/ Metabolic disorders
/ Metabolic syndrome
/ multidisciplinary
/ NF-κB protein
/ Probiotics
/ Rodents
/ Science
/ Science (multidisciplinary)
/ Serum levels
/ Serum lipids
/ Signal transduction
/ TLR4 protein
/ Toll-like receptors
/ Transaminase
/ Tumor necrosis factor-TNF
/ Tumor necrosis factor-α
2022
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Lactobacillus plantarum S9 alleviates lipid profile, insulin resistance, and inflammation in high-fat diet-induced metabolic syndrome rats
by
Shen, Yunjiao
, Wang, Yunlong
, Wang, Lei
, Li, Shengyu
, Zhao, Lei
, Zhang, Lin
, Zhao, Zijian
in
631/326
/ 692/699
/ Alanine
/ Alanine transaminase
/ Aspartate transaminase
/ Blood glucose
/ Body weight
/ Body weight gain
/ High fat diet
/ Humanities and Social Sciences
/ Inflammation
/ Insulin
/ Insulin resistance
/ Lactobacillus plantarum
/ Lipids
/ Lipopolysaccharides
/ Liver
/ Metabolic disorders
/ Metabolic syndrome
/ multidisciplinary
/ NF-κB protein
/ Probiotics
/ Rodents
/ Science
/ Science (multidisciplinary)
/ Serum levels
/ Serum lipids
/ Signal transduction
/ TLR4 protein
/ Toll-like receptors
/ Transaminase
/ Tumor necrosis factor-TNF
/ Tumor necrosis factor-α
2022
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Lactobacillus plantarum S9 alleviates lipid profile, insulin resistance, and inflammation in high-fat diet-induced metabolic syndrome rats
by
Shen, Yunjiao
, Wang, Yunlong
, Wang, Lei
, Li, Shengyu
, Zhao, Lei
, Zhang, Lin
, Zhao, Zijian
in
631/326
/ 692/699
/ Alanine
/ Alanine transaminase
/ Aspartate transaminase
/ Blood glucose
/ Body weight
/ Body weight gain
/ High fat diet
/ Humanities and Social Sciences
/ Inflammation
/ Insulin
/ Insulin resistance
/ Lactobacillus plantarum
/ Lipids
/ Lipopolysaccharides
/ Liver
/ Metabolic disorders
/ Metabolic syndrome
/ multidisciplinary
/ NF-κB protein
/ Probiotics
/ Rodents
/ Science
/ Science (multidisciplinary)
/ Serum levels
/ Serum lipids
/ Signal transduction
/ TLR4 protein
/ Toll-like receptors
/ Transaminase
/ Tumor necrosis factor-TNF
/ Tumor necrosis factor-α
2022
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Lactobacillus plantarum S9 alleviates lipid profile, insulin resistance, and inflammation in high-fat diet-induced metabolic syndrome rats
Journal Article
Lactobacillus plantarum S9 alleviates lipid profile, insulin resistance, and inflammation in high-fat diet-induced metabolic syndrome rats
2022
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Overview
Probiotics are considered to play an crucial role in the treatment of high-fat diet (HFD)-induced lipid metabolic diseases, including metabolic syndrome (MS). This study aimed to investigate the effects of
Lactobacillus plantarum
S9 on MS in HFD-fed rats, and to explore the underlying role of probiotics in the treatment of MS. Sprague-Dawley rats were fed with HFD for 8 weeks, followed by the treatment of
L. plantarum
S9 for 6 weeks, and The body weight and blood glucose level of rats were detected on time. The results showed that
L. plantarum
S9 significantly decreased the body weight gain, Lee’s index, and liver index. Additionally,
L. plantarum
S9 reduced the levels of serum lipids and insulin resistance.
L. plantarum
S9 also decreased the levels of alanine aminotransferase (ALT) and aspartate transaminase (AST) in liver. Moreover, the serum levels of MS-related inflammatory signaling molecules, including lipopolysaccharide (LPS) and tumor necrosis factor-α (TNF-α), were significantly elevated. Western blot analysis showed that
L. plantarum
S9 inhibited the activation of nuclear factor-κB (NF-κB) pathway, decreased the expression level of Toll-like receptor 4 (TLR4), suppressed the activation of inflammatory signaling pathways, and reduced the expression levels of inflammatory factors in HFD-fed rats. Moreover, it further decreased the ratios of p-IκBα/IκBα, p-p65/NF-κB p65, and p-p38/p38. In summary,
L. plantarum
S9, as a potential functional strain, prevents or can prevent onset of MS.
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