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首页> 外文期刊>Cytotechnology >Bead-to-bead transfer of chinese hamster ovary cells using macroporous microcarriers
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Bead-to-bead transfer of chinese hamster ovary cells using macroporous microcarriers

机译:使用大孔微载体的中国仓鼠卵巢细胞的珠到珠转移

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摘要

Chinese hamster ovary cells (CHO-K1) were cultivated in macroporous gelatin microcarriers (CultiSpher G and CultiSpher S) in spinner flasks and a 5 1 bioreactor. Near-to-confluent cultures were harvested by bead-to-bead transfer where intact microcarriers with cells were transferred from a spinner flask to another spinner flask or to the bioreactor with naked microcarrier beads. Successful bead-to-bead transfer was achieved in various split ratios. The duration of attachment seemed to be important where the direct contact of beads to each other can be achieved by intermittent stirring. Repeated transfers were performed and at least four transfers in spinner flasks were achieved.Two variations of bead-to-bead transfer were performed in the 5 1 bioreactor either by seeding the bioreactor with near-to-confluent beads cultivated in spinner flasks orin situ transfer by adding fresh beads to the bioreactor. As in the spinner case, attachment was achieved by intermittent stirring where donor beads were in close proximity to the acceptor beads. Again successful transfers were obtained as evidenced by the good growth on acceptor beads where cell yields were in the range of 3100–4500 cells/bead.The results suggest that bead-to-bead transfer of CHO-K1 cells can be easily performed and do provide an alternative route to applications where dissolution techniques may not offer an efficient solution.
机译:将中国仓鼠卵巢细胞(CHO-K1)在微孔明胶微载体(CultiSpher G和CultiSpher S)中于旋转瓶和5 1生物反应器中培养。通过珠到珠转移收获接近汇合的培养物,其中将具有细胞的完整微载体从旋转瓶转移到另一个旋转瓶或带有裸露微载体珠的生物反应器中。以不同的分流比成功实现了珠到珠的转移。附着的持续时间似乎很重要,在这种情况下,可以通过间歇搅拌实现珠子彼此之间的直接接触。重复进行转移,并至少在转瓶中进行四次转移。在5 1生物反应器中,通过向生物反应器中接种在转瓶中培养的接近汇合的珠子,或在原位转移,在珠子到珠子的两种转移方式中进行两种变化。通过向生物反应器中添加新鲜的珠子。如在旋转器的情况下,通过在给体珠子非常靠近受体珠子的情况下间歇搅拌来实现附着。受体珠的生长良好,细胞产量在3100–4500个细胞/珠之间,证明再次获得了成功的转移。结果表明,CHO-K1细胞的珠对珠转移可以轻松进行,并且可以为溶出技术可能无法提供有效解决方案的应用提供替代途径。

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