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Study of growth, metabolism, and morphology of Akkermansia muciniphila with an in vitro advanced bionic intestinal reactor

机译:用体外先进的仿生肠道反应器研究Akkermansia muciniphila的生长,新陈代谢和形态

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As a kind of potential probiotic, Akkermansia muciniphila abundance in human body is directly causally related to obesity, diabetes, inflammation and abnormal metabolism. In this study, A. muciniphila dynamic cultures using five different media were implemented in an in vitro bionic intestinal reactor for the first time instead of the traditional static culture using brain heart infusion broth (BHI) or BHI?+?porcine mucin (BPM). The biomass under dynamic culture using BPM reached 1.92?g/L, which improved 44.36% compared with the value under static culture using BPM. The biomass under dynamic culture using human mucin (HM) further increased to the highest level of 2.89?g/L. Under dynamic culture using porcine mucin (PM) and HM, the main metabolites were short-chain fatty acids (acetic acid and butyric acid), while using other media, a considerable amount of branched-chain fatty acids (isobutyric and isovaleric acids) were produced. Under dynamic culture Using HM, the cell diameters reached 999?nm, and the outer membrane protein concentration reached the highest level of 26.26?μg/mg. This study provided a preliminary theoretical basis for the development of A. muciniphila as the next generation probiotic.
机译:作为一种潜在的益生菌,Akkkermansia粘蛋白在人体中的丰度与肥胖,糖尿病,炎症和代谢异常直接关系。在这项研究中,第一次使用五种不同培养基使用五种不同培养基使用五种不同培养基的粘蛋白动态培养物,而不是使用脑心脏输注肉汤(BHI)或BHI?+?猪粘蛋白(BPM)的传统静态培养物。使用BPM的动态培养下的生物质达到1.92μm≤1.92克/升,与使用BPM的静态培养下的值改善了44.36%。使用人粘蛋白(HM)的动态培养下的生物质进一步增加至最高水平的2.89?G / L.在使用猪粘蛋白(PM)和HM的动态培养下,主要代谢物是短链脂肪酸(乙酸和丁酸),同时使用其他培养基,相当大量的支链脂肪酸(异种酸和异戊酸)是生产。在使用HM的动态培养下,电池直径达到999℃,外膜蛋白浓度达到最高水平的26.26ΩΩ·μg/ mg。本研究为下一代益生菌提供了一种初步的理论基础。

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