Anti-obesity potentiality of Lactiplantibacillus plantarum E2_MCCKT isolated from a fermented beverage, haria: a high fat diet-induced obese mice model study

Tridip Kumar Das, Priyanka Kar, Titli Panchali, Amina Khatun, Ananya Dutta, Smita Ghosh, Sudipta Chakrabarti, Shrabani Pradhan, Keshab Chandra Mondal, Kuntal Ghosh
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Abstract

Obesity is a growing epidemic worldwide. Several pharmacologic drugs are being used to treat obesity but these medicines exhibit side effects. To find out the alternatives of these drugs, we aimed to assess the probiotic properties and anti-obesity potentiality of a lactic acid bacterium E2_MCCKT, isolated from a traditional fermented rice beverage, haria. Based on the 16S rRNA sequencing, the bacterium was identified as Lactiplantibacillus plantarum E2_MCCKT. The bacterium exhibited in vitro probiotic activity in terms of high survivability in an acidic environment and 2% bile salt, moderate auto-aggregation, and hydrophobicity. Later, E2_MCCKT was applied to obese mice to prove its anti-obesity potentiality. Adult male mice (15.39 ± 0.19 g) were randomly divided into three groups (n = 5) according to the type of diet: normal diet (ND), high-fat diet (HFD), and HFD supplemented with E2_MCCKT (HFT). After four weeks of bacterial treatment on the obese mice, a significant reduction of body weight, triglyceride, and cholesterol levels, whereas, improvements in serum glucose levels were observed. The bacterial therapy led to mRNA up-regulation of lipolytic transcription factors such as peroxisome proliferator-activated receptor-α which may increase the expression of fatty acid oxidation-related genes such as acyl-CoA oxidase and carnitine palmitoyl-transferase-1. Concomitantly, both adipocytogenesis and fatty acid synthesis were arrested as reflected by the down-regulation of sterol-regulatory element-binding protein-1c, acetyl-CoA carboxylase, and fatty acid synthase genes. In protein expression study, E2_MCCKT significantly increased IL-10 expression while decreasing pro-inflammatory cytokine (IL-1Ra and TNF-α) expression. In conclusion, the probiotic Lp. plantarum E2_MCCKT might have significant anti-obesity effects on mice.

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从发酵饮料哈里亚中分离出的植物乳杆菌 E2_MCCKT 的抗肥胖潜力:高脂饮食诱导肥胖小鼠模型研究
肥胖症在全球日益流行。目前有多种药物可用于治疗肥胖症,但这些药物都有副作用。为了找到这些药物的替代品,我们旨在评估从一种传统的大米发酵饮料 haria 中分离出来的乳酸菌 E2_MCCKT 的益生特性和抗肥胖潜力。根据 16S rRNA 测序,该细菌被鉴定为植物乳杆菌 E2_MCCKT。该细菌在酸性环境和 2% 胆盐条件下具有高存活率、适度的自动聚集性和疏水性,表现出体外益生菌活性。随后,E2_MCCKT 被用于肥胖小鼠,以证明其抗肥胖潜力。将成年雄性小鼠(15.39 ± 0.19 g)按饮食类型随机分为三组(n = 5):正常饮食组(ND)、高脂饮食组(HFD)和添加 E2_MCCKT 的高脂饮食组(HFT)。对肥胖小鼠进行四周细菌治疗后,观察到体重、甘油三酯和胆固醇水平显著下降,而血清葡萄糖水平有所改善。细菌疗法导致脂肪分解转录因子(如过氧化物酶体增殖激活受体-α)的 mRNA 上调,这可能会增加脂肪酸氧化相关基因(如酰基-CoA 氧化酶和肉碱棕榈酰转移酶-1)的表达。同时,固醇调节元件结合蛋白-1c、乙酰-CoA 羧化酶和脂肪酸合成酶基因的下调反映出脂肪细胞生成和脂肪酸合成均受到抑制。在蛋白质表达研究中,E2_MCCKT 显著增加了 IL-10 的表达,同时降低了促炎细胞因子(IL-1Ra 和 TNF-α)的表达。总之,益生菌 Lp.plantarum E2_MCCKT 可能对小鼠有明显的抗肥胖作用。
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