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首页> 外文期刊>Biotechnology Progress >Retention and viability characteristics of mammalian cells in an acoustically driven polymer mesh
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Retention and viability characteristics of mammalian cells in an acoustically driven polymer mesh

机译:声驱动聚合物网中哺乳动物细胞的保留和活力特征

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摘要

A processing approach for the collection and retention of mammalian cells within a high porosity polyester mesh having millimeter-sized pores has been studied. Cell retention occurs via energizing the mesh with a low intensity, resonant acoustic field. The resulting acoustic field induces the interaction of cells with elements of the mesh or with each other and effectively prevents the entrainment of cells in the effluent stream. Experiments involving aqueous suspensions of polystyrene particles were used to provide benchmark data on the performance of the acoustic retention cell. Experiments using mouse hybridoma cells showed that retention densities of over 1.5 x 10(8) cell/mL could be obtained. In addition, the acoustic field was shown to produce a negligible effect on cell viability for short-term exposure.
机译:已经研究了用于在具有毫米大小的孔的高孔隙率聚酯网中收集和保留哺乳动物细胞的加工方法。细胞的滞留是通过以低强度的共振声场激励网格来实现的。产生的声场引起细胞与网状元件或彼此之间的相互作用,并有效地防止细胞夹带在流出流中。涉及聚苯乙烯颗粒水悬浮液的实验被用来提供有关声保持单元性能的基准数据。使用小鼠杂交瘤细胞的实验表明,可以获得超过1.5 x 10(8)细胞/ mL的保留密度。另外,对于短期暴露,声场对细胞活力产生的影响可忽略不计。

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