首页> 外文OA文献 >Lysis-on-Chip of Single Target Cells following Forced Interaction with CTLs or NK Cells on a Dielectrophoresis-Based Array.
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Lysis-on-Chip of Single Target Cells following Forced Interaction with CTLs or NK Cells on a Dielectrophoresis-Based Array.

机译:在基于介电电泳的阵列上与CTL或NK细胞强制相互作用后单个靶细胞的裂解。

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摘要

Guiding the interaction of single cells acting as partners in heterotypic interactions (e.g., effectors and targets of immune lysis) and monitoring the outcome of these interactions are regarded as crucial biomedical achievements. In this study, taking advantage of a dielectrophoresis (DEP)-based Laboratory-on-a-chip platform (the DEPArray), we show that it is possible to generate closed DEP cages entrapping CTLs and NK cells as either single cells or clusters; reversibly immobilize a single virus-presenting or tumor cell within the chip at a selected position; move cages and their content to predetermined spatial coordinates by software-guided routing; force a cytotoxic effector to physically interact with a putative target within a secluded area by merging their respective cages; generate cages containing effector and target cells at predetermined E:T ratios; accurately assess cytotoxicity by real-time quantitation of the release kinetics of the fluorescent dye calcein from target cells (>50 lytic events may be tested simultaneously); estimate end points of calcein release within 16 min of initial E:T cell contact; simultaneously deliver Ab-based phenotyping and on-chip lysis assessment; and identify lytic and nonlytic E:T combinations and discriminate nonlytic effector phenotypes from target refractoriness to immune lysis. The proof of principle is provided that DEPArray technology, previously used to levitate and move single cells, can be used to identify highly lytic antiviral CTLs and tumor cells that are particularly refractory to NK cell lysis. These findings are of primary interest in targeted immunotherapy.
机译:指导在异型相互作用中充当伴侣的单个细胞的相互作用(例如,免疫裂解的效应子和靶标)并监测这些相互作用的结果被认为是至关重要的生物医学成就。在这项研究中,利用基于介电电泳(DEP)的芯片实验室平台(DEPArray),我们证明有可能生成封闭的DEP笼子,将CTL和NK细胞包裹为单个细胞或簇。可逆地将单个病毒呈递或肿瘤细胞固定在芯片上的选定位置;通过软件引导的路线将网箱及其内容移动到预定的空间坐标;通过合并它们各自的笼子,迫使细胞毒性效应子与隐蔽区域内的推定目标发生物理相互作用;以预定的E:T比产生包含效应细胞和靶细胞的笼子;通过实时定量荧光染料钙黄绿素从靶细胞中释放的动力学来准确评估细胞毒性(可同时测试> 50个裂解事件);估计钙黄绿素释放在E:T细胞初次接触后16分钟内的释放终点;同时提供基于Ab的表型和芯片裂解评估;并确定溶血性和非溶血性E:T组合,并将非溶血性效应子表型从靶标难治性转变为免疫溶血。提供了原理证明,以前用于悬浮和移动单个细胞的DEPArray技术可用于鉴定对NK细胞裂解特别难治的高裂解抗病毒CTL和肿瘤细胞。这些发现是靶向免疫治疗的主要兴趣。

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