Chen Po-Yang, Huang Lynn L H, Hsieh Hsyue-Jen
Department of Chemical Engineering, National Taiwan University, No.1, Sec. 4, Roosevelt Road, Taipei 10617, Taiwan.
Biochem Biophys Res Commun. 2007 Aug 17;360(1):1-6. doi: 10.1016/j.bbrc.2007.04.211. Epub 2007 Jun 8.
For long-term culture, murine adipose-derived stromal cells (mADSCs) at latter passages demonstrated a marked decline in proliferative activity, exhibited senescent morphology and reduced differentiation potentials, particularly osteogenesis. To extend the lifespan of mADSCs, two culture conditions containing hyaluronan (HA) was compared in our study, one as a culture medium supplement (SHA), and the other where HA was pre-coated on culture surface (CHA). mADSCs cultivated with SHA exhibited a prolonged lifespan, reduced cellular senescence, and enhanced osteogenic potential compared to regular culture condition (control). Upon CHA treatment, mADSCs tended to form cell aggregates with gradual growth profiles, while their differentiation activities remained similar to SHA groups. After transferring mADSCs from CHA to control surface, they were shown to have an extended lifespan and an increase of osteogenic potential. Our results suggested that HA can be useful for preserving the proliferation and differentiation potentials of long-term cultured mADSCs.
对于长期培养,传代后期的小鼠脂肪来源基质细胞(mADSCs)增殖活性显著下降,呈现衰老形态且分化潜能降低,尤其是成骨能力。为延长mADSCs的寿命,我们的研究比较了两种含透明质酸(HA)的培养条件,一种是作为培养基补充物(SHA),另一种是将HA预包被在培养表面(CHA)。与常规培养条件(对照)相比,用SHA培养的mADSCs寿命延长,细胞衰老减少,成骨潜能增强。经CHA处理后,mADSCs倾向于形成具有逐渐生长模式的细胞聚集体,而其分化活性与SHA组相似。将mADSCs从CHA转移至对照表面后,它们显示出延长的寿命和成骨潜能增加。我们的结果表明,HA可用于维持长期培养的mADSCs的增殖和分化潜能。