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11?A multi-physics approach enabling rare cell isolation with high recovery and high purity

机译:11?一种多物理方法,使稀有细胞分离具有高回收率和高纯度

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Background Advancements in fields of multi-omics analysis and cell-based therapies depend upon efficient cell processing tools to isolate rare cancer and immune cells from complex biologic samples as an initial step in sample preparation. Conventional technologies are limited in automation, recovery and purity. We present an integrated system based on multiple physics principles with built-in novel technologies to achieve cell purification, concentration and target cell isolation, with high recovery at an unprecedented flow rate. This platform, the Multi-physics Automated Reconfigurable Separation (MARS), combines tunable, acoustic cell processing and in-flow immuno-magnetic separation technologies, enabling automation of the entire cell sample preparation workflow for proteomics and genomics analysis. Methods Circulating tumor cells (CTC) are present in extreme low frequency in blood stream (1–100 in billions of blood cells) thus it has been a challenge to isolate CTCs with high recovery. We have developed protocols on MARS to isolate CTCs from whole blood for multi-color flow cytometry analysis. To demonstrate the extent of enrichment of tumor cells in whole blood, PC3 cells were used for spike recovery. RBC lysed blood sample was then loaded on MARS and automatically processed through cell washing, concentration, and magnetic depletion. Enriched tumor cells were collected and analyzed by flow cytometry. Results Results show 4 log enrichment of tumor cells and average recovery of spiked CTC 85% in the clinical relative range 100 cells per ml of whole blood (R2=0.929) with a throughput of 60 ml/hr. Isolated cells were confirmed to be cancer cells with imaging analysis and single cell genomic sequencing. The protocol was also validated with other cell line cells such as A549. The purity of the cells prepared by MARS are ideal for single cell genomics platforms. Conclusions The fluidics of MARS is also replaceable and can be sterilized to minimize sample to sample contamination. The high molecular debris removal achieved by MARS is ideal for single cell genomics platforms, as is the first-to-market automated and integrated sample preparation and cell separation system designed to be a versatile tool for downstream cell analysis.
机译:多OMICS分析和基于细胞疗法领域的背景推进取决于有效的细胞加工工具,将稀有癌症和免疫细胞从复杂的生物样品中分离为样品制备的初始步骤。传统技术在自动化,恢复和纯度中受到限制。我们介绍了一种基于多种物理原理的集成系统,内置新型技术,以实现细胞纯化,浓度和靶细胞分离,以前所未有的流速高回收。该平台,多物理自动可重新配置分离(MARS),结合可调,声学电池处理和流动的免疫磁分离技术,使整个细胞样品制备工作流程的自动化进行蛋白质组学和基因组学分析。方法循环肿瘤细胞(CTC)在血流中以极端低频存在(数十亿血细胞1-100),因此将CTC分离高回收率是挑战。我们在火星上开发了关于分离全血的CTC以进行多色流式细胞仪分析。为了证明全血中肿瘤细胞富集的程度,PC3细胞用于尖峰恢复。然后将RBC裂解的血液样品加载到火星上,并通过细胞洗涤,浓缩和磁性耗尽自动处理。收集富集的肿瘤细胞并通过流式细胞术分析。结果结果显示> 4肿瘤细胞的富集和尖刺CTC的平均回收> 85%在临床相对范围<100个全血(R2 = 0.929)中的临床相对范围<100细胞(R2 = 0.929),其产量为60ml / hr。确认分离的细胞是具有成像分析和单细胞基因组测序的癌细胞。该方案还与其他细胞系细胞(如A549)验证。 MARS制备的细胞的纯度是单细胞基因组学平台的理想选择。结论火星的流动性也是可更换的,可以灭菌以最小化样品以样品污染。 MARS实现的高分子碎片去除是单细胞基因组学平台的理想选择,这是第一辆自动化和集成样品制备和细胞分离系统,该制备和细胞分离系统是用于下游细胞分析的多功能工具。

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