Song Won-Suk, Jo Sung-Hyun, Lee Jae-Seung, Kwon Ji-Eun, Park Ji-Hyeon, Kim Ye-Rim, Baek Ji-Hyun, Kim Min-Gyu, Kwon Seo-Young, Kim Yun-Gon
Department of Chemical Engineering, Soongsil University, Seoul, Republic of Korea.
Biotechnol J. 2023 Dec;18(12):e2300180. doi: 10.1002/biot.202300180. Epub 2023 Aug 27.
Butyrate-producing bacteria play a key role in human health, and recent studies have triggered interest in their development as next-generation probiotics. However, there remains limited knowledge not only on the identification of high-butyrate-producing bacteria in the human gut but also in the metabolic capacities for prebiotic carbohydrates and their interaction with the host. Herein, it was discovered that Roseburia intestinalis produces higher levels of butyrate and digests a wider variety of prebiotic polysaccharide structures compared with other human major butyrate-producing bacteria (Eubacterium rectale, Faecalibacterium prausnitzii, and Roseburia hominis). Moreover, R. intestinalis extracts upregulated the mRNA expression of tight junction proteins (TJP1, OCLN, and CLDN3) in human intestinal epithelial cells more than other butyrate-producing bacteria. R. intestinalis was cultured with human intestinal epithelial cells in the mimetic intestinal host-microbe interaction coculture system to explore the health-promoting effects using multiomics approaches. Consequently, it was discovered that live R. intestinalis only enhances purine metabolism and the oxidative pathway, increasing adenosine triphosphate levels in human intestinal epithelial cells, but that heat-killed bacteria had no effect. Therefore, this study proposes that R. intestinalis has potentially high value as a next-generation probiotic to promote host intestinal health.
产丁酸细菌对人类健康起着关键作用,最近的研究引发了人们对将其开发为下一代益生菌的兴趣。然而,目前不仅在人类肠道中高丁酸产生菌的鉴定方面,而且在益生元碳水化合物的代谢能力及其与宿主的相互作用方面,知识仍然有限。在此发现,与其他主要的人类产丁酸细菌(直肠真杆菌、普拉梭菌和人罗斯拜瑞氏菌)相比,肠道罗斯拜瑞氏菌产生的丁酸水平更高,并且能消化更多种类的益生元多糖结构。此外,与其他产丁酸细菌相比,肠道罗斯拜瑞氏菌提取物能更显著地上调人肠道上皮细胞中紧密连接蛋白(TJP1、OCLN和CLDN3)的mRNA表达。在模拟肠道宿主-微生物相互作用的共培养系统中,将肠道罗斯拜瑞氏菌与人肠道上皮细胞一起培养,以采用多组学方法探索其促进健康的作用。结果发现,活的肠道罗斯拜瑞氏菌仅增强嘌呤代谢和氧化途径,增加人肠道上皮细胞中的三磷酸腺苷水平,但热灭活的细菌则没有这种作用。因此,本研究提出肠道罗斯拜瑞氏菌作为促进宿主肠道健康的下一代益生菌具有潜在的高价值。