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首页> 外文期刊>Journal of clinical gastroenterology >Protective Role of Postbiotic Mediators Secreted by Lactobacillus rhamnosus GG Versus Lipopolysaccharide-induced Damage in Human Colonic Smooth Muscle Cells
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Protective Role of Postbiotic Mediators Secreted by Lactobacillus rhamnosus GG Versus Lipopolysaccharide-induced Damage in Human Colonic Smooth Muscle Cells

机译:鼠李糖乳杆菌GG与脂多糖诱导的人结肠平滑肌细胞损伤后分泌的调解员的保护作用。

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Background:Some beneficial effects of probiotics may be due to secreted probiotic-derived factors, identified as postbiotic mediators. The aim of this study was to evaluate whether supernatants harvested from Lactobacillus rhamnosus GG (LGG) cultures (ATCC53103 strain) protect colonic human smooth muscle cells (HSMCs) from lipopolysaccharide (LPS)-induced myogenic damage.Materials and Methods:LGG was grown in de Man, Rogosa, Share medium at 37 degrees C and samples were collected in middle and late exponential, stationary, and overnight phases. Supernatants were recovered by centrifugation, filtered, and stored at -20 degrees C. The primary HSMCs culture was exposed for 24 hours to purified LPS of a pathogen strain of Escherichia coli (O111:B4) (1 g/mL) with and without supernatants. Postbiotic effects were evaluated on the basis of HSMCs morphofunctional alterations and interleukin-6 (IL-6) production. Data are expressed as meanSE (P<0.05 significant).Results:LPS induced persistent, significant, 20.5%+/- 0.7% cell shortening and 34.5%+/- 2.2% decrease in acetylcholine-induced contraction of human HSMCs. These morphofunctional alterations were paralleled to a 365.65%+/- 203.13% increase in IL-6 production. All these effects were dose-dependently reduced by LGG supernatants. Supernatants of the middle exponential phase already partially restored LPS-induced cell shortening by 57.34%+/- 12.7% and IL-6 increase by 145.8%+/- 4.3% but had no effect on LPS-induced inhibition of contraction. Maximal protective effects were obtained with supernatants of the late stationary phase with LPS-induced cell shortening restored by 84.1%+/- 4.7%, inhibition of contraction by 85.5%+/- 6.4%, and IL-6 basal production by 92.7%+/- 1.2%.Conclusions:LGG-derived products are able to protect human SMCs from LPS-induced myogenic damage. Novel insights have been provided for the possibility that LGG-derived products could reduce the risk of progression to postinfective motor disorders.
机译:背景:益生菌的某些有益作用可能是由于分泌的益生菌衍生因子所致,这些因子被确定为生物后介体。这项研究的目的是评估从鼠李糖乳杆菌GG(LGG)培养物(ATCC53103菌株)收获的上清液是否能保护结肠平滑肌细胞(HSMC)免受脂多糖(LPS)引起的肌原性损伤。 de Man,Rogosa,37℃下的Share培养基,在中晚期指数,固定和过夜阶段收集样品。通过离心回收上清液,过滤,并保存在-20摄氏度下。将原代HSMC培养物暴露于带有和不带有上清液的大肠杆菌病原体菌株(O111:B4)(1 g / mL)的纯化LPS中24小时。 。根据HSMC的形态功能改变和白介素6(IL-6)的产生,评估了后生效应。数据表示为均值SE(P <0.05显着)。结果:LPS诱导的乙酰胆碱诱导的人类HSMC收缩持续,显着,20.5%+ /-0.7%的细胞缩短和34.5%+ /-2.2%的降低。这些形态功能改变与IL-6产生的365.65%+ /-203.13%的增加平行。 LGG上清液可剂量依赖性地降低所有这些作用。中间指数期的上清液已经部分恢复了LPS诱导的细胞缩短57.34%+ /-12.7%,IL-6增加了145.8%+ /-4.3%,但是对LPS诱导的收缩抑制没有影响。固定后期晚期的上清液具有最大的保护作用,其中LPS诱导的细胞缩短恢复了84.1%+ /-4.7%,收缩抑制了85.5%+ /-6.4%,IL-6基础产生了92.7%+ /-1.2%。结论:LGG衍生的产品能够保护人SMC免受LPS引起的肌原性损害。提供了有关LGG衍生产品降低感染后运动障碍发展风险的新颖见解。

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