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将微孔阵列与经济实惠的半自动单细胞吸取器配对,用于研究循环肿瘤细胞的异质性。

Pairing Microwell Arrays with an Affordable, Semiautomated Single-Cell Aspirator for the Interrogation of Circulating Tumor Cell Heterogeneity.

作者信息

Tokar Jacob J, Stahlfeld Charlotte N, Sperger Jamie M, Niles David J, Beebe David J, Lang Joshua M, Warrick Jay W

机构信息

Department of Biomedical Engineering, University of Wisconsin, Madison, Madison, WI, USA.

UW Carbone Cancer Center, University of Wisconsin, Madison, Madison, WI, USA.

出版信息

SLAS Technol. 2020 Apr;25(2):162-176. doi: 10.1177/2472630319898146. Epub 2020 Jan 26.

Abstract

Comprehensive analysis of tumor heterogeneity requires robust methods for the isolation and analysis of single cells from patient samples. An ideal approach would be fully compatible with downstream analytic methods, such as advanced genomic testing. These endpoints necessitate the use of live cells at high purity. A multitude of microfluidic circulating tumor cell (CTC) enrichment technologies exist, but many of those perform bulk sample enrichment and are not, on their own, capable of single-cell interrogation. To address this, we developed an affordable semiautomated single-cell aspirator (SASCA) to further enrich rare-cell populations from a specialized microwell array, per their phenotypic markers. Immobilization of cells within microwells, integrated with a real-time image processing software, facilitates the detection and precise isolation of targeted cells that have been optimally seeded into the microwells. Here, we demonstrate the platform capabilities through the aspiration of target cells from an impure background population, where we obtain purity levels of 90%-100% and demonstrate the enrichment of the target population with high-quality RNA extraction. A range of low cell numbers were aspirated using SASCA before undergoing whole transcriptome and genome analysis, exhibiting the ability to obtain endpoints from low-template inputs. Lastly, CTCs from patients with castration-resistant prostate cancer were isolated with this platform and the utility of this method was confirmed for rare-cell isolation. SASCA satisfies a need for an affordable option to isolate single cells or highly purified subpopulations of cells to probe complex mechanisms driving disease progression and resistance in patients with cancer.

摘要

对肿瘤异质性进行全面分析需要强大的方法来从患者样本中分离和分析单细胞。理想的方法应与下游分析方法(如先进的基因组检测)完全兼容。这些终点要求使用高纯度的活细胞。虽然存在多种微流控循环肿瘤细胞(CTC)富集技术,但其中许多技术进行的是批量样本富集,仅凭自身无法对单细胞进行检测。为了解决这个问题,我们开发了一种经济实惠的半自动单细胞吸取器(SASCA),以根据其表型标记从专门的微孔阵列中进一步富集稀有细胞群体。将细胞固定在微孔内,并与实时图像处理软件相结合,有助于检测和精确分离已最佳接种到微孔中的靶向细胞。在此,我们通过从不纯的背景群体中吸取靶细胞来展示该平台的能力,我们获得了90%-100%的纯度水平,并通过高质量的RNA提取证明了靶细胞群体的富集。在进行全转录组和基因组分析之前,使用SASCA吸取了一系列低细胞数样本,展示了从低模板输入中获得终点结果的能力。最后,用该平台分离了去势抵抗性前列腺癌患者的CTC,并证实了该方法在稀有细胞分离方面的实用性。SASCA满足了一种需求,即提供一种经济实惠的选择来分离单细胞或高度纯化的细胞亚群,以探究驱动癌症患者疾病进展和耐药性的复杂机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bf40/8879417/59f1bc3d4982/nihms-1777656-f0001.jpg

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