School of Engineering, Bernal Institute, University of Limerick, Limerick, V94 T9PX, Ireland.
Health Research Institute, University of Limerick, Limerick, V94 T9PX, Ireland.
Sci Rep. 2021 Jul 7;11(1):13997. doi: 10.1038/s41598-021-91865-1.
The influence of Poiseuille flow on cell viability has applications in the areas of cancer metastasis, lab-on-a-chip devices and flow cytometry. Indeed, retaining cell viability is important in the emerging field of adoptive cell therapy, as cells need to be returned to patients' bodies, while the viability of other cells, which are perhaps less accustomed to suspension in a fluidic environment, is important to retain in flow cytometers and other such devices. Despite this, it is unclear how Poiseuille flow affects cell viability. Following on from previous studies which investigated the viability and inertial positions of circulating breast cancer cells in identical flow conditions, this study investigated the influence that varying flow rate, and the corresponding Reynolds number has on the viability of a range of different circulating cells in laminar pipe flow including primary T-cells, primary fibroblasts and neuroblastoma cells. It was found that Reynolds numbers as high as 9.13 had no effect on T-cells while the viabilities of neuroblastoma cells and intestinal fibroblasts were significantly reduced in comparison. This indicates that in vitro flow devices need to be tailored to cell-specific flow regimes.
泊肃叶流对细胞活力的影响在癌症转移、芯片实验室设备和流动细胞术等领域有应用。实际上,在新兴的过继细胞疗法领域,保留细胞活力很重要,因为需要将细胞返回给患者体内,而对于其他可能不太适应悬浮在流体环境中的细胞,在流动细胞仪和其他此类设备中保留其活力也很重要。尽管如此,泊肃叶流如何影响细胞活力还不清楚。本研究在前人研究的基础上,在相同的流动条件下研究了循环乳腺癌细胞的活力和惯性位置,进一步调查了不同流动速率和相应的雷诺数对一系列不同循环细胞在层流管道流动中的活力的影响,包括原代 T 细胞、原代成纤维细胞和神经母细胞瘤细胞。结果发现,雷诺数高达 9.13 对 T 细胞没有影响,而神经母细胞瘤细胞和肠成纤维细胞的活力明显降低。这表明,体外流动装置需要根据细胞特定的流动模式进行调整。