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Automated platform for multiparameter stimulus response studies of metabolic activity at the single-cell level

机译:用于单细胞水平代谢活动多参数刺激反应研究的自动化平台

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We have developed a fully automated platform for multiparameter characterization of physiological response of individual and small numbers of interacting cells. The platform allows for minimally invasive monitoring of cell phenotypes while administering a variety of physiological insults and stimuli by means of precisely controlled microfluidic subsystems. It features the capability to integrate a variety of sensitive intra- and extra-cellular fluorescent probes for monitoring minute intra- and extra-cellular physiological changes. The platform allows for performance of other, post- measurement analyses of individual cells such as transcriptomics.rnOur method is based on the measurement of extracellular metabolite concentrations in hermetically sealed ~200-pL microchambers, each containing a single cell or a small number of cells. The major components of the system are a) a confocal laser scan head to excite and detect with single photon sensitivity the emitted photons from sensors; b) a microfluidic cassette to confine and incubate individual cells, providing for dynamic application of external stimuli, and c) an integration module consisting of software and hardware for automated cassette manipulation, environmental control and data collection. The custom-built confocal scan head allows for fluorescence intensity detection with high sensitivity and spatial confinement of the excitation light to individual pixels of the sensor area, thus minimizing any phototoxic effects. The platform is designed to permit incorporation of multiple optical sensors for simultaneous detection of various metabolites of interest. The modular detector structure allows for several imaging modalities, including high resolution intracellular probe imaging and extracellular sensor readout. The integrated system allows for simulation of physiologically relevant microenvironmental stimuli and simultaneous measurement of the elicited phenotypes. We present details of system design, system characterization and metabolic response analysis of individual eukaryotic cells.
机译:我们已经开发出了一个全自动平台,用于对单个和少量相互作用细胞的生理反应进行多参数表征。该平台允许对细胞表型进行微创监测,同时通过精确控制的微流体子系统来管理各种生理损伤和刺激。它具有集成各种敏感的细胞内和细胞外荧光探针的能力,以监控细胞内和细胞外的微小生理变化。该平台允许对单个细胞进行其他事后测量分析,例如转录组学。我们的方法基于对密闭的〜200 pL微腔中细胞外代谢物浓度的测量,每个微腔包含一个细胞或少量细胞。该系统的主要组件是:a)共聚焦激光扫描头,用于激发和检测具有单光子灵敏度的传感器发出的光子; b)微流控盒,用于限制和孵育单个细胞,以动态施加外部刺激,并且c)集成模块,由软件和硬件组成,用于自动化盒操作,环境控制和数据收集。定制的共焦扫描头可实现高灵敏度的荧光强度检测,并将激发光在空间上限制在传感器区域的各个像素上,从而将任何光毒效应降至最低。该平台旨在允许并入多个光学传感器,以便同时检测各种目标代谢物。模块化探测器结构允许多种成像方式,包括高分辨率细胞内探针成像和细胞外传感器读数。该集成系统允许模拟生理相关的微环境刺激并同时测量诱发的表型。我们介绍了各个真核细胞的系统设计,系统表征和代谢反应分析的详细信息。

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