Søndergaard Rebekka Harary, Follin Bjarke, Lund Lisbeth Drozd, Juhl Morten, Ekblond Annette, Kastrup Jens, Haack-Sørensen Mandana
Cardiology Stem Cell Centre, The Heart Centre, Rigshospitalet, Copenhagen University Hospital, Copenhagen, Denmark.
Cardiology Stem Cell Centre, The Heart Centre, Rigshospitalet, Copenhagen University Hospital, Copenhagen, Denmark.
Cytotherapy. 2017 Jan;19(1):95-106. doi: 10.1016/j.jcyt.2016.09.006. Epub 2016 Oct 19.
Adipose-derived stromal cells (ASCs) are attractive sources for cell-based therapies. The hypoxic niche of ASCs in vivo implies that cells will benefit from hypoxia during in vitro expansion. Human platelet lysate (hPL) enhances ASC proliferation rates, compared with fetal bovine serum (FBS) at normoxia. However, the low proliferation rates of FBS-expanded ASCs could be signs of senescence or quiescence. We aimed to determine the effects of hypoxia and hPL on the expansion of ASCs and whether FBS-expanded ASCs are senescent or quiescent.
ASCs expanded in FBS or hPL at normoxia or hypoxia until passage 7 (P7), or in FBS until P5 followed by culture in hPL until P7, were evaluated by proliferation rates, cell cycle analyses, gene expression and β-galactosidase activity.
hPL at normoxia and hypoxia enhanced proliferation rates and expression of cyclins, and decreased G0/G1 fractions and expression of p21 and p27, compared with FBS. The shift from FBS to hPL enhanced cyclin levels, decreased p21 and p27 levels and tended to decrease G0/G1 fractions.
Hypoxia does not add to the effect of hPL during ASC expansion with regard to proliferation, cell cycle regulation and expression of cyclins, p21 and p27. hPL rejuvenates FBS-expanded ASCs with regard to cell cycle regulation and expression of cyclins, p21 and p27. This indicates a reversible arrest. Therefore, we conclude that ASCs expanded until P7 are not senescent regardless of culture conditions.
脂肪来源的间充质干细胞(ASC)是基于细胞治疗的有吸引力的细胞来源。ASC在体内的低氧微环境意味着细胞在体外扩增过程中将从低氧中受益。与常氧条件下的胎牛血清(FBS)相比,人血小板裂解液(hPL)可提高ASC的增殖率。然而,FBS扩增的ASC增殖率低可能是衰老或静止的迹象。我们旨在确定低氧和hPL对ASC扩增的影响,以及FBS扩增的ASC是否衰老或静止。
通过增殖率、细胞周期分析、基因表达和β-半乳糖苷酶活性,评估在常氧或低氧条件下于FBS或hPL中扩增至第7代(P7)的ASC,或在FBS中扩增至P5后于hPL中培养至P7的ASC。
与FBS相比,常氧和低氧条件下的hPL均提高了增殖率和细胞周期蛋白的表达,降低了G0/G1期比例以及p21和p27的表达。从FBS转换为hPL可提高细胞周期蛋白水平,降低p21和p27水平,并倾向于降低G0/G1期比例。
在ASC扩增过程中,就增殖、细胞周期调控以及细胞周期蛋白、p21和p27的表达而言,低氧并未增强hPL的作用。hPL在细胞周期调控以及细胞周期蛋白、p21和p27的表达方面使FBS扩增的ASC恢复活力。这表明存在可逆性停滞。因此,我们得出结论,无论培养条件如何,扩增至P7的ASC都未衰老。