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Monolithic Chip for High-throughput Blood Cell Depletion to Sort Rare Circulating Tumor Cells

机译:用于高通量血细胞耗竭以分选稀有循环肿瘤细胞的单片芯片

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摘要

Circulating tumor cells (CTCs) are a treasure trove of information regarding the location, type and stage of cancer and are being pursued as both a diagnostic target and a means of guiding personalized treatment. Most isolation technologies utilize properties of the CTCs themselves such as surface antigens (e.g., epithelial cell adhesion molecule or EpCAM) or size to separate them from blood cell populations. We present an automated monolithic chip with 128 multiplexed deterministic lateral displacement devices containing ~1.5 million microfabricated features (12 µm–50 µm) used to first deplete red blood cells and platelets. The outputs from these devices are serially integrated with an inertial focusing system to line up all nucleated cells for multi-stage magnetophoresis to remove magnetically-labeled white blood cells. The monolithic CTC-iChip enables debulking of blood samples at 15–20 million cells per second while yielding an output of highly purified CTCs. We quantified the size and EpCAM expression of over 2,500 CTCs from 38 patient samples obtained from breast, prostate, lung cancers, and melanoma. The results show significant heterogeneity between and within single patients. Unbiased, rapid, and automated isolation of CTCs using monolithic CTC-iChip will enable the detailed measurement of their physicochemical and biological properties and their role in metastasis.
机译:循环肿瘤细胞(CTC)是有关癌症的位置,类型和阶段的信息的宝库,并且正在被视为诊断目标和指导个性化治疗的手段。大多数分离技术利用CTC本身的特性,例如表面抗原(例如上皮细胞粘附分子或EpCAM)或大小将它们与血细胞群体分开。我们提出了一种具有128个多重确定性横向位移装置的自动化单片芯片,其中包含约150万个微加工特征(12μm至50μm),用于首先消耗红细胞和血小板。这些设备的输出与惯性聚焦系统串行集成,以排列所有有核细胞,以进行多级磁泳,以去除磁性标记的白细胞。整体式CTC-iChip能够以每秒15–20百万个细胞的速度对血液样本进行减集,同时输出高纯度的CTC。我们对从乳腺癌,前列腺癌,肺癌和黑色素瘤中获得的38个患者样本中的2500多个CTC的大小和EpCAM表达进行了量化。结果表明,单个患者之间和内部存在明显的异质性。使用整体式CTC-iChip进行CTC的无偏,快速和自动隔离,将能够详细测量其理化和生物学特性及其在转移中的作用。

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