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Selective Identification of Macrophages and Cancer Cells Based on Thermal Transport through Surface-Imprinted Polymer Layers

机译:通过表面印迹聚合物层的热传输选择性鉴定巨噬细胞和癌细胞

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In this article, we describe a novel straightforward method for the specific identification of viable cells (macrophages and cancer cell lines MCF-7 and Jurkat) in a buffer solution. The detection of the various cell types is based on changes of the heat transfer resistance at the solid—liquid interface of a thermal sensor device induced by binding of the cells to a surface-imprinted polymer layer covering an aluminum chip. We observed that the binding of cells to the polymer layer results in a measurable increase of heat transfer resistance, meaning that the cells act as a thermally insulating layer. The detection limit was found to be on the order of 10~4 cells/mL, and mutual cross-selectivity effects between the cells and different types of imprints were carefully characterized. Finally, a rinsing method was applied, allowing for the specific detection of cancer cells with their respective imprints while the cross-selectivity toward peripheral blood mononuclear cells was negligible. The concept of the sensor platform is fast and low-cost while allowing also for repetitive measurements,
机译:在本文中,我们描述了一种新颖的直接方法,用于在缓冲溶液中特异性鉴定活细胞(巨噬细胞和癌细胞系MCF-7和Jurkat)。各种电池类型的检测基于在热传感器设备的固液界面处的传热阻力的变化,该传热阻力是由于电池与覆盖铝芯片的表面压印聚合物层结合而引起的。我们观察到,细胞与聚合物层的结合导致传热阻力的可测量增加,这意味着细胞充当了隔热层。发现检出限为10〜4个细胞/ mL的数量级,并仔细表征了细胞与不同类型印迹之间的相互交叉选择性作用。最后,采用了一种漂洗方法,可以对癌细胞及其各自的印记进行特异性检测,而对外周血单核细胞的交叉选择性可以忽略不计。传感器平台的概念既快速又低成本,同时还允许重复测量,

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