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Multivariate analysis of apoptotic markers versus cell cycle phase in living human cancer cells by microfluidic cytometry

机译:微流体细胞术治疗人体癌细胞凋亡标志物与细胞周期相的多变量分析

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摘要

Measurement of apoptotic markers in tumors can be directly correlated with the cell cycle phase using flow cytometry (FCM). The conventional DNA content analysis requires cell permeabilization to stain nuclei with fluorescent probes such as propidium iodide or use of a costly UV-excitation line for Hoechst 33342 probe. The access to FCM is also still limited to centralized core facilities due to its inherent high costs and complex operation. This work describes development and proof-of-concept validation of a portable and user-friendly microfluidic flow cytometer (μFCM) that can perform multivariate real time analysis on live cells using sampling volumes as small as 10 microliters. The μFCM system employs disposable microfluidic cartridges fabricated using injection molding in poly(methylmethacrylate) transparent thermoplastic. Furthermore, the dedicated and miniaturized electronic hardware interface enables up to six parameter detection using a combination of spatially separated solid-state 473 (10 mW) and 640 nm (20 mW) lasers and x-y stage for rapid laser alignment adjustment. We provide new evidence that a simple 2D flow focusing on a chip is sufficient to measure cellular DNA content in live tumor cells using a far-red DNA probe DRAQ5. The feasibility of using the μFCM system for a dose-response profiling of investigational anti-cancer agents on human hematopoietic cancer cells is also demonstrated. The data show that μFCM can provide a viable novel alternative to conventional FCM for multiparameter detection of caspase activation and dissipation of mitochondrial inner membrane potential (ΔΨm) in relation to DNA content (cell cycle phase) in live tumor cells.
机译:可以使用流式细胞仪(FCM)将肿瘤中凋亡标记物的测量与细胞周期阶段直接相关。常规的DNA含量分析需要细胞透化,以使用荧光探针(例如碘化丙啶)对细胞核染色,或者将昂贵的UV激发线用于Hoechst 33342探针。由于其固有的高成本和复杂的操作,对FCM的访问也仍然限于集中式核心设施。这项工作描述了便携式且用户友好的微流式细胞仪(μFCM)的开发和概念验证,该细胞仪可以使用小至10微升的采样量对活细胞进行多变量实时分析。 μFCM系统采用一次性微流体药筒,该药筒通过注塑成型在聚(甲基丙烯酸甲酯)透明热塑性塑料中制成。此外,专用且小型化的电子硬件接口使用空间分离的固态473(10 mW)和640 nm(20 mW)激光器以及x-y平台的组合,可实现多达六个参数检测,以实现快速的激光对准调整。我们提供了新的证据,即一个集中在芯片上的简单2D流足以使用远红外DNA探针DRAQ5测量活体肿瘤细胞中的细胞DNA含量。还证明了使用μFCM系统对人类造血癌细胞上的研究性抗癌药物进行剂量反应分析的可行性。数据表明,μFCM可以提供一种替代常规FCM的可行新方法,用于多参数检测caspase活化和线粒体内膜电位(ΔΨm)相对于活肿瘤细胞DNA含量(细胞周期阶段)的耗散。

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