Vournakis J N, Runstadler P W
Biotechnology. 1991;17:305-26. doi: 10.1016/b978-0-409-90123-8.50018-5.
Flexible, three-dimensional, collagen Microspheres have been developed to actively promote a natural, optimal microenvironment for large-scale tissue culture of mammalian cells. The transport of nutrients into and cell products out of the Microspheres is enhanced by forced convective flow, which is the result of the tumbling of Microspheres and the dynamic properties of media flow in the fluidized-bed bioreactor. The collagen Microspheres have important characteristics of composition and morphology essential for optimal cell-matrix and cell-cell interactions. These interactions lead to high cell density and productivity through the dynamic modification of the microenvironment by cell-derived extracellular constituents. The collagen and Microsphere/fluidized-bed system provides the means to control and optimize the diffusive and contact components of the cells' microenvironment. Adaptation of cells to this microenvironment often results in dramatic increases in cell-specific productivity. Production of biotherapeutics in this process can be routinely performed in serum-free media, often leading to high productivity and product quality.
已开发出柔性三维胶原微球,以积极促进哺乳动物细胞大规模组织培养的天然、最佳微环境。通过强制对流,营养物质进入微球以及细胞产物从微球中排出的运输得以增强,这是微球翻滚以及流化床生物反应器中培养基流动的动态特性所导致的结果。胶原微球具有对最佳细胞-基质和细胞-细胞相互作用至关重要的组成和形态重要特征。这些相互作用通过细胞衍生的细胞外成分对微环境的动态修饰导致高细胞密度和高生产率。胶原与微球/流化床系统提供了控制和优化细胞微环境的扩散和接触成分的手段。细胞适应这种微环境通常会导致细胞特异性生产率大幅提高。在此过程中生物治疗剂的生产可以在无血清培养基中常规进行,这通常会带来高生产率和产品质量。