Comparison of Cell-Free Extracts from Three Newly Identified Lactobacillus plantarum Strains on the Inhibitory Effect of Adipogenic Differentiation and Insulin Resistance in 3T3-L1 Adipocytes.
Naeun OhJaehoon LeeHyewon KimMijin KwonJeongmin SeoSangho RohPublished in: BioMed research international (2021)
Obesity and associated metabolic disorders, including cardiovascular disease and diabetes, are rapidly becoming serious global health problems. It has been reported that Lactobacillus plantarum (L. plantarum) extracts have the beneficial activities of antiobesity and antidiabetes, although few studies have compared the beneficial effects among various L. plantarum extracts. In this study, three new L. plantarum (named LP, LS, and L14) strains were identified, and the antiobesogenic and diabetic effects of their extracts were investigated and compared using 3T3-L1 cells in vitro. Lipid accumulation in maturing 3T3-L1 cells was significantly decreased by the addition of LS and L14 extracts. The mRNA expression levels of Pparγ, C/ebpα, Fabp4, Fas, and Dgat1 were significantly decreased by the addition of LP, LS, and L14 extracts. Interestingly, the protein expression levels of PPARγ, C/EBPα, FABP4, and FAS were downregulated in mature 3T3-L1 cells with the addition of the L14 extract. Moreover, the LS and L14 extract treatments stimulated glucose uptake in maturing adipocytes. The L14 extract treatments exhibited a significant reduction in TNF-α protein expression, which is a key factor of insulin resistance in adipocytes. Of the three extracts, L14 extract markedly reduced adipogenic differentiation and insulin resistance in vitro, suggesting that the L14 extract may be used as a therapeutic agent for obesity-associated metabolic disorders.
Keyphrases
- insulin resistance
- induced apoptosis
- type diabetes
- cardiovascular disease
- adipose tissue
- oxidative stress
- high fat diet induced
- cell cycle arrest
- metabolic syndrome
- cell free
- anti inflammatory
- global health
- escherichia coli
- mental health
- rheumatoid arthritis
- public health
- weight loss
- endoplasmic reticulum stress
- skeletal muscle
- body mass index
- binding protein
- signaling pathway
- blood pressure
- glycemic control
- physical activity
- cardiovascular events
- weight gain
- clinical evaluation