Immunology Service, Regional University Hospital Carlos Haya, Malaga, Spain.
Cytotherapy. 2011 May;13(5):572-81. doi: 10.3109/14653249.2010.547466. Epub 2011 Jan 5.
Human multipotent mesenchymal stromal cells (hMSC) have become one of the main interests in regenerative medicine because of their ability to differentiate into different lineages. Human amniotic fluid is reported to contain MSC (hAMSC) and therefore may be a useful source of cells for clinical applications. However, our understanding of the behavior of these cells in indefinite in vitro culture conditions is very limited.
We systematically evaluated and characterized, throughout their whole lifespan, the expansion potential, chromosomal stability, surface and intracellular phenotype and differentiation potential of fibroblastoid hAMSC (F-type hAMSC).
Nine F-type hAMSC cultures could be expanded in in vitro culture conditions for 223.25 ± 24.44 days (mean ± SD), during which time 28.96 ± 1.5 passages were made giving rise to 54.95 ± 3.17 population doublings (PD) and an estimated number of accumulated cells of between 1.0 × 10(22) and 9.7 × 10(23), with no visible alterations in the chromosome during their lifespan. All the cultures showed unchanged percentages of strongly positive expressions of the surface markers CD29, CD44, CD73, CD90, CD95, CD105 and HLA-ABC, as well as the embryonic intracellular markers Nanog and Sox2, during their lifespan, whereas the expression of the embryonic surface markers SSEA3, SSEA4, TRA-1-60 and TRA-1-81 fell until it disappeared with progression of the culture. These cells retained their differentiation capacities to adipogenic, chondrogenic and osteogenic lineages throughout their lifespan.
F-type hAMSC exhibit reproducible biologic characteristics, confirming that these cells are ideal candidates for use in regenerative medicine.
人类多能间充质基质细胞(hMSC)因其能够分化为不同谱系而成为再生医学的主要关注点之一。据报道,人类羊水含有 MSC(hAMSC),因此可能是临床应用的有用细胞来源。然而,我们对这些细胞在无限期体外培养条件下的行为的理解非常有限。
我们系统地评估和表征了整个寿命过程中纤维母细胞样 hAMSC(F 型 hAMSC)的扩增潜力、染色体稳定性、表面和细胞内表型以及分化潜力。
9 个 F 型 hAMSC 培养物可以在体外培养条件下扩增 223.25 ± 24.44 天(平均值 ± 标准差),在此期间进行了 28.96 ± 1.5 代培养,产生了 54.95 ± 3.17 个群体倍增(PD),估计积累的细胞数量在 1.0×10(22)和 9.7×10(23)之间,在其寿命过程中染色体没有明显改变。所有培养物在其寿命过程中均表现出表面标记物 CD29、CD44、CD73、CD90、CD95、CD105 和 HLA-ABC 的强烈阳性表达百分比以及胚胎内标记物 Nanog 和 Sox2 保持不变,而胚胎表面标记物 SSEA3、SSEA4、TRA-1-60 和 TRA-1-81 的表达随着培养的进行而下降,直至消失。这些细胞在其整个寿命过程中保持向脂肪、软骨和骨谱系分化的能力。
F 型 hAMSC 表现出可重复的生物学特征,证实这些细胞是再生医学的理想候选者。