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A Microchip Platform for Interrogating Tumor-Macrophage Paracrine Signaling at the Single-Cell Level

机译:用于在单细胞水平上询问肿瘤-巨噬细胞旁分泌信号的Microchip平台

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摘要

It is increasingly recognized that infiltrating immune cells contribute to the pathogenesis of a wide range of solid tumors. The paracrine signaling between the tumor and the immune cells alters the functional state of individual tumor cells and, correspondingly, the anticipated response to radiation or chemotherapies, which is of great importance to clinical oncology. Here we present a high-density microchip platform capable of measuring a panel of paracrine signals associated with heterotypic tumor-immune cell interactions in the single-cell, pair-wise manner. The device features a high-content cell capture array of 5000+ sub-nanoliter microchambers for the isolation of single and multi- cell combinations and a multi-plex antibody “barcode” array for multiplexed protein secretion analysis from each microchamber. In this work, we measured a panel of 16 proteins produced from individual glioma cells, individual macrophage cells and varying heterotypic multi-cell combinations of both on the same device. The results show changes of tumor cell functional phenotypes that cannot be explained by an additive effect from isolated single cells and, presumably, can be attributed to the paracrine signaling between macrophage and glioma cells. The protein correlation analysis reveals the key signaling nodes altered by tumor-macrophage communication. This platform enables the novel pair-wise interrogation of heterotypic cell-cell paracrine signaling at the individual cell level with an in-depth analysis of the changing functional phenotypes for different co-culture cell combinations.
机译:越来越多地认识到,浸润性免疫细胞促进了多种实体瘤的发病。肿瘤与免疫细胞之间的旁分泌信号传导改变了单个肿瘤细胞的功能状态,并相应地改变了对放射或化学疗法的预期反应,这对临床肿瘤学非常重要。在这里,我们提出了一种高密度微芯片平台,该平台能够以单细胞,成对的方式测量与异型肿瘤-免疫细胞相互作用相关的一组旁分泌信号。该设备具有可分离单细胞和多细胞组合的5000纳纳升以下微腔室的高内涵细胞捕获阵列,以及用于从每个微腔室进行多重蛋白质分泌分析的多重抗体“条形码”阵列。在这项工作中,我们测量了一组由16个蛋白质组成的蛋白质组,这些蛋白质是在同一设备上从单个神经胶质瘤细胞,单个巨噬细胞和不同的异型多细胞组合产生的。结果表明,肿瘤细胞功能表型的变化不能用分离的单个细胞的累加作用来解释,并且推测可以归因于巨噬细胞和神经胶质瘤细胞之间的旁分泌信号传导。蛋白质相关性分析揭示了肿瘤-巨噬细胞通讯改变的关键信号传导节点。该平台能够对单个细胞水平上的异型细胞-细胞旁分泌信号进行新颖的成对询问,并针对不同的共培养细胞组合对不断变化的功能表型进行深入分析。

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