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Tumor cell-based liquid biopsy using high-throughput microfluidic enrichment of entire leukapheresis product.基于肿瘤细胞的液体活检,采用高通量微流控技术富集全血单采产物。
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基于肿瘤细胞的液体活检,采用高通量微流控技术富集全血单采产物。

Tumor cell-based liquid biopsy using high-throughput microfluidic enrichment of entire leukapheresis product.

作者信息

Mishra Avanish, Huang Shih-Bo, Dubash Taronish, Burr Risa, Edd Jon F, Wittner Ben S, Cunneely Quinn E, Putaturo Victor R, Deshpande Akansha, Antmen Ezgi, Gopinathan Kaustav A, Otani Keisuke, Miyazawa Yoshiyuki, Kwak Ji Eun, Guay Sara Y, Kelly Justin, Walsh John, Nieman Linda, Galler Isabella, Chan PuiYee, Lawrence Michael S, Sullivan Ryan J, Bardia Aditya, Micalizzi Douglas S, Sequist Lecia V, Lee Richard J, Franses Joseph W, Ting David T, Brunker Patricia A R, Maheswaran Shyamala, Miyamoto David T, Haber Daniel A, Toner Mehmet

出版信息

bioRxiv. 2024 Mar 14:2024.03.13.583573. doi: 10.1101/2024.03.13.583573.

DOI:10.1101/2024.03.13.583573
PMID:38559183
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC10980012/
Abstract

Circulating Tumor Cells (CTCs), interrogated by sampling blood from patients with cancer, contain multiple analytes, including intact RNA, high molecular weight DNA, proteins, and metabolic markers. However, the clinical utility of tumor cell-based liquid biopsy has been limited since CTCs are very rare, and current technologies cannot process the blood volumes required to isolate a sufficient number of tumor cells for in-depth assays. We previously described a high-throughput microfluidic prototype utilizing high-flow channels and amplification of cell sorting forces through magnetic lenses. Here, we apply this technology to analyze patient-derived leukapheresis products, interrogating a mean blood volume of 5.83 liters from patients with metastatic cancer, with a median of 2,799 CTCs purified per patient. Isolation of many CTCs from individual patients enables characterization of their morphological and molecular heterogeneity, including cell and nuclear size and RNA expression. It also allows robust detection of gene copy number variation, a definitive cancer marker with potential diagnostic applications. High-volume microfluidic enrichment of CTCs constitutes a new dimension in liquid biopsies.

摘要

通过采集癌症患者的血液来检测循环肿瘤细胞(CTCs),其包含多种分析物,包括完整的RNA、高分子量DNA、蛋白质和代谢标志物。然而,基于肿瘤细胞的液体活检的临床应用一直受到限制,因为循环肿瘤细胞非常罕见,并且当前技术无法处理分离足够数量肿瘤细胞进行深入分析所需的血量。我们之前描述了一种利用高流量通道和通过磁透镜放大细胞分选力的高通量微流控原型。在此,我们应用该技术分析患者来源的白细胞分离产物,检测转移性癌症患者平均5.83升的血量,每位患者纯化的循环肿瘤细胞中位数为2799个。从个体患者中分离出许多循环肿瘤细胞能够对其形态和分子异质性进行表征,包括细胞和细胞核大小以及RNA表达。这也使得能够可靠地检测基因拷贝数变异,这是一种具有潜在诊断应用价值的明确癌症标志物。循环肿瘤细胞的大容量微流控富集构成了液体活检的一个新维度。