Mitohormesis Research Center, Yonsei University Wonju College of Medicine, 20 Ilsan-ro, Wonju, Gangwon-Do, 26426, Republic of Korea.
Department of Physiology, Yonsei University Wonju College of Medicine, 20 Ilsan-ro, Wonju, Gangwon-Do, 26426, Republic of Korea.
Stem Cell Res Ther. 2020 Nov 4;11(1):467. doi: 10.1186/s13287-020-01974-3.
Although mitochondrial functions are essential for cell survival, their critical roles in stem cell fate, including proliferation, differentiation, and senescence, remain elusive. Ginsenoside Rg3 exhibits various biological activities and reportedly increases mitochondrial biogenesis and respiration. Herein, we observed that Rg3 increased proliferation and suppressed senescence of human bone marrow-derived mesenchymal stem cells. Osteogenic, but not adipogenic, differentiation was facilitated by Rg3 treatment. Rg3 suppressed reactive oxygen species production and upregulated mitochondrial biogenesis and antioxidant enzymes, including superoxide dismutase. Consistently, Rg3 strongly augmented basal and ATP synthesis-linked respiration with high spare respiratory capacity. Rg3 treatment elevated cytosolic Ca concentration contributing to mitochondrial activation. Reduction of intracellular or extracellular Ca levels strongly inhibited Rg3-induced activation of mitochondrial respiration and biogenesis. Taken together, Rg3 enhances capabilities of mitochondrial and antioxidant functions mainly through a Ca-dependent pathway, which improves the proliferation and differentiation potentials and prevents the senescence of human mesenchymal stem cells.
虽然线粒体功能对于细胞存活至关重要,但它们在干细胞命运中的关键作用,包括增殖、分化和衰老,仍然难以捉摸。人参皂苷 Rg3 具有多种生物活性,据报道能增加线粒体生物发生和呼吸作用。在此,我们观察到 Rg3 能增加人骨髓间充质干细胞的增殖并抑制衰老。Rg3 处理能促进成骨分化,但不能促进脂肪生成分化。Rg3 抑制活性氧的产生,并上调线粒体生物发生和抗氧化酶,包括超氧化物歧化酶。一致地,Rg3 能强烈增加基础和与 ATP 合成相关的呼吸作用,同时具有高备用呼吸能力。Rg3 处理会增加细胞溶质 Ca 浓度,从而促进线粒体的激活。减少细胞内或细胞外 Ca 水平会强烈抑制 Rg3 诱导的线粒体呼吸和生物发生的激活。综上所述,Rg3 主要通过 Ca 依赖性途径增强线粒体和抗氧化功能,从而提高人骨髓间充质干细胞的增殖和分化潜能,防止衰老。