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一种基于光诱导介电泳(ODEP)的微流控系统,用于从癌症患者血液样本中分离高纯度CD45/EpCAM细胞——这些细胞临床意义的论证与初步探索

An Optically Induced Dielectrophoresis (ODEP)-Based Microfluidic System for the Isolation of High-Purity CD45/EpCAM Cells from the Blood Samples of Cancer Patients-Demonstration and Initial Exploration of the Clinical Significance of These Cells.

作者信息

Liao Chia-Jung, Hsieh Chia-Hsun, Chiu Tzu-Keng, Zhu Yu-Xian, Wang Hung-Ming, Hung Feng-Chun, Chou Wen-Pin, Wu Min-Hsien

机构信息

Graduate Institute of Biomedical Engineering, Chang Gung University, Taoyuan City 33302, Taiwan.

Division of Haematology/Oncology, Department of Internal Medicine, Chang Gung Memorial Hospital (Linko), Taoyuan City 33302, Taiwan.

出版信息

Micromachines (Basel). 2018 Oct 31;9(11):563. doi: 10.3390/mi9110563.

Abstract

Circulating tumour cells (CTCs) in blood circulation play an important role in cancer metastasis. CTCs are generally defined as the cells in circulating blood expressing the surface antigen EpCAM (epithelial cell adhesion molecule). Nevertheless, CTCs with a highly metastatic nature might undergo an epithelial-to-mesenchymal transition (EMT), after which their EpCAM expression is downregulated. In current CTC-related studies, however, these clinically important CTCs with high relevance to cancer metastasis could be missed due to the use of the conventional CTC isolation methodologies. To precisely explore the clinical significance of these cells (i.e., CD45/EpCAM cells), the high-purity isolation of these cells from blood samples is required. To achieve this isolation, the integration of fluorescence microscopic imaging and optically induced dielectrophoresis (ODEP)-based cell manipulation in a microfluidic system was proposed. In this study, an ODEP microfluidic system was developed. The optimal ODEP operating conditions and the performance of live CD45/EpCAM cell isolation were evaluated. The results demonstrated that the proposed system was capable of isolating live CD45/EpCAM cells with a purity as high as 100%, which is greater than the purity attainable using the existing techniques for similar tasks. As a demonstration case, the cancer-related gene expression of CD45/EpCAM cells isolated from the blood samples of healthy donors and cancer patients was successfully compared. The initial results indicate that the CD45/EpCAM nucleated cell population in the blood samples of cancer patients might contain cancer-related cells, particularly EMT-transformed CTCs, as suggested by the high detection rate of vimentin gene expression. Overall, this study presents an ODEP microfluidic system capable of simply and effectively isolating a specific, rare cell species from a cell mixture.

摘要

血液循环中的循环肿瘤细胞(CTC)在癌症转移中发挥着重要作用。CTC通常被定义为循环血液中表达表面抗原EpCAM(上皮细胞粘附分子)的细胞。然而,具有高度转移特性的CTC可能会经历上皮-间质转化(EMT),之后其EpCAM表达会下调。然而,在当前与CTC相关的研究中,由于使用传统的CTC分离方法,这些与癌症转移高度相关的具有临床重要性的CTC可能会被遗漏。为了精确探究这些细胞(即CD45/EpCAM细胞)的临床意义,需要从血液样本中高纯度分离这些细胞。为实现这种分离,有人提出在微流控系统中整合荧光显微镜成像和基于光诱导介电电泳(ODEP)的细胞操控技术。在本研究中,开发了一种ODEP微流控系统。评估了最佳ODEP操作条件以及活CD45/EpCAM细胞分离的性能。结果表明,所提出的系统能够以高达100%的纯度分离活CD45/EpCAM细胞,这高于使用现有技术完成类似任务所能达到的纯度。作为一个示范案例,成功比较了从健康供体和癌症患者血液样本中分离出的CD45/EpCAM细胞的癌症相关基因表达。初步结果表明,癌症患者血液样本中的CD45/EpCAM有核细胞群体可能含有癌症相关细胞,特别是EMT转化的CTC,波形蛋白基因表达的高检测率表明了这一点。总体而言,本研究展示了一种能够简单有效地从细胞混合物中分离特定稀有细胞种类的ODEP微流控系统。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/22cd/6266761/e49207d79341/micromachines-09-00563-g001.jpg

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