Extended Culture Conditions for Multipotent Bone Marrow-Derived Mesenchymal Stem Cells.

Kui Zhang, Yayoi Ikeda, Shohei Kasugai, Masa-Aki Ikeda
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Abstract

Mesenchymal stem cells (MSCs) offer a promising source of cells for musculoskeletal regeneration because of their potential to differentiate into bone, cartilage and fat. However, their proliferation and multilineage differentiation potential decreases with aging or increased time in in vitro culture. To determine culture conditions capable of enabling maintenance of MSCs for extended periods of time, human bone marrow-derived MSCs (BM-MSCs) were cultured in growth medium containing various combinations of growth factors and small chemical compounds. Upon reaching confluence, MSCs were subcultured continuously and then tested for differentiation capacity. After screening various growth factors and small chemical compounds, we found a combination capable of maintaining the proliferation potential of BM-MSCs obtained from a 19-year-old donor (young MSCs) up to passage 13 (P13). In contrast, unsupplemented MSCs reached senescence at P10. Total population doublings of control (P10) and supplemented MSCs (P12) were estimated at 20.4 and 42, respectively. Young MSCs cultured with supplements maintained osteogenic, adipogenic and chondrogenic differentiation capacities at P12 as confirmed by expression of lineage-specific differentiation markers. Furthermore, the supplementation of to BM-MSCs obtained from 65- and 79-year-old donors (aged MSCs) also continued to proliferate until P12, and maintained osteogenic and adipogenic differentiation capacity until P7 and P8, respectively, whereas, unsupplemented aged MSCs stopped proliferating at P8. These results indicate that our extended culture conditions maintained the proliferative capacity of young MSCs while retaining their multipotent differentiation potential, and improved both proliferation and differentiation of aged MSCs.

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多能骨髓间充质干细胞的扩展培养条件。
间充质干细胞(MSCs)具有分化为骨、软骨和脂肪的潜力,为肌肉骨骼再生提供了一个有希望的细胞来源。然而,在体外培养中,它们的增殖和多系分化潜力随着年龄的增长或时间的延长而降低。为了确定能够长时间维持骨髓间充质干细胞的培养条件,将人骨髓间充质干细胞(BM-MSCs)培养在含有各种生长因子和小化合物组合的生长培养基中。汇合后,继续传代培养MSCs,然后测试其分化能力。在筛选各种生长因子和小化合物后,我们发现一种组合能够维持从19岁供体获得的BM-MSCs(年轻MSCs)的增殖潜力,直到传代13 (P13)。相反,未补充的MSCs在P10达到衰老。对照组(P10)和补充MSCs (P12)的总种群加倍率分别为20.4和42。通过谱系特异性分化标记物的表达,证实了用补充剂培养的年轻MSCs在P12时保持成骨、成脂和成软骨分化能力。此外,补充来自65岁和79岁供体的BM-MSCs(老年MSCs)也持续增殖至P12,并分别维持成骨和成脂分化能力至P7和P8,而未补充的老年MSCs在P8时停止增殖。这些结果表明,我们的延长培养条件保持了年轻MSCs的增殖能力,同时保留了其多能分化潜力,并改善了老年MSCs的增殖和分化。
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