首页> 外文会议>International Conference on Solid-State Sensors, Actuators and Microsystems & Eurosensors XXXIII >Single Cell Analysis Microfluidic Device for Cell Line Optimisation in Upstream Cell Culture Processing Biopharamceutical Applications
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Single Cell Analysis Microfluidic Device for Cell Line Optimisation in Upstream Cell Culture Processing Biopharamceutical Applications

机译:单细胞分析微流控装置,用于上游细胞培养加工生物制药应用中的细胞系优化

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Increased demands for protein production efficiency by identification of optimal protein producer cells and more stringent FDA requirements regarding single cell clonality represent key unmet needs within the biopharma industry. A microfluidic single cell analysis device is reported within that identifies optimal protein producing cells within a population, subsequently isolating and culturing them for efficient cell line development. This lab on a disc device first centrifugally sediments a cohort of suspended CHO cells into an array of 1,200 traps at single-occupancy distribution where they can be individually analysed for their protein expression via their fluorescence. Cells exhibiting the highest specific productivity (Qp) are retrieved and further analysed on the chip by staining with a secondary antibody-conjugate and tested for viability. The reduced sample volumes, the low-complexity instrumentation and simplified data analysis offers significant potential for critical time and cost savings compared to current standard methods such as flow cytometry and higher cost integrated instruments.
机译:通过鉴定最佳蛋白质生产细胞对蛋白质生产效率的需求增加,以及有关单细胞克隆性的更严格的FDA要求,代表了生物制药行业的关键未满足需求。报道了其中的微流体单细胞分析装置,其识别群体内最佳的产生蛋白质的细胞,随后分离并培养它们以进行有效的细胞系开发。这个在磁盘设备上的实验室首先将一批悬浮的CHO细胞以单人分布的方式离心沉积到1200个陷阱的阵列中,在其中可以通过荧光单独分析它们的蛋白质表达。回收具有最高比生产率(Qp)的细胞,并通过用第二抗体-缀合物染色在芯片上进行进一步分析,并测试其活力。与当前的标准方法(例如流式细胞仪和成本更高的集成仪器)相比,减少的样品量,低复杂度的仪器和简化的数据分析为节省关键时间和成本提供了巨大潜力。

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