Hosseinizand Hasti, Ebrahimi Marzieh, Abdekhodaie Mohammad J
Department of Chemical and Petroleum Engineering, Sharif University of Technology, Tehran, 11155-9465, Iran.
Department of Stem Cells and Developmental Biology at Cell Science Research Center, Royan Institute for Stem Cell Biology and Technology, ACECR, Tehran, Iran.
Cytotechnology. 2016 Aug;68(4):969-78. doi: 10.1007/s10616-015-9851-3. Epub 2015 Aug 12.
Mechanical stress caused by agitation is one of the factors that can affect hematopoietic stem cell expansion in suspension bioreactors. Therefore, we have investigated the effects of agitation on umbilical cord blood hematopoietic stem cell (UCB-HSC) growth and differentiation. A comparison was made between various agitation rates (20, 40 and 60 rpm) in spinner-flask and cells cultured in glass petri dish as a static culture. Moreover, the fluid dynamic at various agitation rates of spinner-flask was analyzed to determine shear stress. The spinner-flask contained a rotational moving mixer with glass ball and was kept in tissue culture incubator. To reduce consumption of cytokines, UCB-serum was used which widely decreased the costs. Our results determined that, agitation rate at 40 rpm promoted UCB-HSCs expansion and their colony forming potential. Myeloid progenitors were the main type of cells at 40 rpm agitation rate. The results of glucose consumption and lactic acid production were in complete agreement with colony assay and expansion data and indicated the superiority of culture in spinner-flask when agitated at 40 rpm over to other agitation speeds and also static culture. Cell viability and colony count was affected by changing the agitation speed. We assume that changes in cell growth resulted from the effect of shear stress directly on cell viability, and indirectly on signaling pathways that influence the cells to differentiate.
搅拌引起的机械应力是影响悬浮生物反应器中造血干细胞扩增的因素之一。因此,我们研究了搅拌对脐带血造血干细胞(UCB-HSC)生长和分化的影响。将转瓶中不同搅拌速率(20、40和60转/分钟)下培养的细胞与在玻璃培养皿中作为静态培养的细胞进行了比较。此外,分析了转瓶在不同搅拌速率下的流体动力学以确定剪切应力。转瓶中装有带玻璃球的旋转混合器,并置于组织培养箱中。为了减少细胞因子的消耗,使用了UCB血清,这大大降低了成本。我们的结果表明,40转/分钟的搅拌速率促进了UCB-HSCs的扩增及其集落形成潜力。在40转/分钟的搅拌速率下,髓系祖细胞是主要的细胞类型。葡萄糖消耗和乳酸产生的结果与集落测定和扩增数据完全一致,表明在40转/分钟搅拌下的转瓶培养优于其他搅拌速度以及静态培养。细胞活力和集落计数受搅拌速度变化的影响。我们认为细胞生长的变化是由于剪切应力直接对细胞活力产生影响,并间接影响影响细胞分化的信号通路所致。