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屎肠球菌 L-15 提取物增强小鼠皮肤来源前体细胞的自我更新和增殖。

Enterococcus faecium L-15 Extract Enhances the Self-Renewal and Proliferation of Mouse Skin-Derived Precursor Cells.

机构信息

Cellular Reprogramming and Embryo Biotechnology Laboratory, Dental Research Institute, BK21, Seoul National University School of Dentistry, Seoul, 08826, South Korea.

Biomedical Research Institute, Neoregen Biotech Co., Ltd., Gyeonggi-do, 16614, South Korea.

出版信息

Probiotics Antimicrob Proteins. 2020 Dec;12(4):1492-1501. doi: 10.1007/s12602-020-09635-w.

Abstract

Lactic acid bacteria (LAB) in the gastrointestinal tract have beneficial health effects. LAB activate the proliferation of intestinal stem cells and speed the recovery of damaged intestinal cells, but little is known about effect of LAB on other adult stem cells. In this study, a cell-free extract of Enterococcus faecium L-15 (L15) was exposed to mouse skin-derived precursor cells (SKPs), and the changes in characteristics associated with proliferation and self-renewal capacity were investigated. L15 increased the size of the spheres and the proliferation rate of SKPs. Cell cycle analysis revealed that cells in the S-phase increased after treatment with L15. In the L15-treated group, the total number of spheres significantly increased. The expression level of pluripotency marker genes also increased, while the mesenchymal lineage-related differentiation marker genes significantly decreased in the L15-treated group. The PI3K/Akt signaling pathway was activated by L15 in SKPs. These results indicate that L15 enhances proliferation and self-renewal of SKPs and may be used as a supplement for stem cell maintenance or application of stem cell therapy. This is the first report to investigate the functional effects of E. faecium on the proliferation and self-renewal capacity of SKPs.

摘要

肠道内的乳酸菌 (LAB) 对健康有有益影响。LAB 可激活肠道干细胞的增殖并加速受损肠道细胞的恢复,但对于 LAB 对其他成体干细胞的影响知之甚少。在这项研究中,粪肠球菌 L-15(L15)的无细胞提取物被暴露于小鼠皮肤衍生前体细胞(SKPs),并研究了与增殖和自我更新能力相关的特性变化。L15 增加了 SKPs 球体的大小和增殖率。细胞周期分析显示,用 L15 处理后 S 期细胞增加。在 L15 处理组中,球体的总数显著增加。多能性标记基因的表达水平也增加,而在 L15 处理组中,间充质谱系相关的分化标记基因显著减少。L15 激活了 SKPs 中的 PI3K/Akt 信号通路。这些结果表明,L15 增强了 SKPs 的增殖和自我更新能力,可作为干细胞维持或应用干细胞治疗的补充。这是第一项研究粪肠球菌对 SKPs 增殖和自我更新能力的功能影响的报告。

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