Department of Agricultural Biotechnology and Research Institute of Agriculture and Life Science, Seoul National University, Seoul 08826, Republic of Korea.
Department of Pharmacology and Systems Physiology, University of Cincinnati College of Medicine, Cincinnati, OH 45267, USA.
J Microbiol Biotechnol. 2024 Oct 28;34(10):2091-2099. doi: 10.4014/jmb.2405.05028. Epub 2024 Aug 9.
Probiotics, when consumed in adequate amounts, can promote the health of the host and beneficially modulate the host's immunity. Particularly during the host's early life, the gut intestine undergoes a period of epithelial maturation in which epithelial cells organize into specific crypt and villus structures. This process can be mediated by the gut microbiota. Recent studies have reported that the administration of probiotics can further promote intestinal maturation in the neonatal intestine. Therefore, in this study, we investigated the effects of extracellular vesicles derived from the SLAM 216 strain, which is an established probiotic with known immune and anti-aging effects on intestinal epithelial maturation and homeostasis, using mouse small intestinal organoids. As per our findings, treatment with SLAM 216-derived LF216EV (LF216EV) has significantly increased the bud number and size of organoid buds. Furthermore, extracellular vesicle (EV) treatment upregulated the expression of maturation-related genes, including , , , and . Tight junctions are known to have an important role in the intestinal immune barrier, and EV treatment has significantly increased the expression of genes associated with tight junctions, such as , , , and , indicating that it can promote intestinal development. This was supported by RNA sequencing, which revealed the upregulation of genes associated with cAMP-mediated signaling, which is known to regulate cellular processes including cell differentiation. Additionally, organoids exposed to LF216EV exhibited upregulation of genes associated with maintaining brain memory and neurotransmission, suggesting possible future functional implications.
益生菌在适量摄入时可以促进宿主健康,并有益地调节宿主的免疫功能。特别是在宿主的早期生命中,肠道经历上皮细胞成熟的过程,在此过程中,上皮细胞组织成特定的隐窝和绒毛结构。这个过程可以被肠道微生物群调节。最近的研究报告称,益生菌的给药可以进一步促进新生儿肠道的肠上皮成熟。因此,在这项研究中,我们使用小鼠小肠类器官研究了 SLAM 216 菌株来源的细胞外囊泡(EV)对肠上皮成熟和稳态的影响,SLAM 216 是一种具有已知免疫和抗衰老作用的益生菌。研究结果表明,用 SLAM 216 衍生的 LF216EV(LF216EV)处理显著增加了类器官芽的芽数和大小。此外,细胞外囊泡(EV)处理上调了与成熟相关的基因的表达,包括、、、和。紧密连接在肠道免疫屏障中起着重要作用,EV 处理显著增加了与紧密连接相关的基因的表达,如、、、和,表明它可以促进肠道发育。这得到了 RNA 测序的支持,RNA 测序显示与 cAMP 介导的信号转导相关的基因上调,该信号转导已知调节包括细胞分化在内的细胞过程。此外,暴露于 LF216EV 的类器官上调了与维持大脑记忆和神经传递相关的基因,表明可能存在未来的功能影响。