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A Versatile Automated Platform for Micro-scale Cell Stimulation Experiments

机译:用于微型细胞刺激实验的多功能自动化平台

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摘要

Study of cells in culture (in vitro analysis) has provided important insight into complex biological systems. Conventional methods and equipment for in vitro analysis are well suited to study of large numbers of cells (≥105) in milliliter-scale volumes (≥0.1 ml). However, there are many instances in which it is necessary or desirable to scale down culture size to reduce consumption of the cells of interest and/or reagents required for their culture, stimulation, or processing. Unfortunately, conventional approaches do not support precise and reproducible manipulation of micro-scale cultures, and the microfluidics-based automated systems currently available are too complex and specialized for routine use by most laboratories. To address this problem, we have developed a simple and versatile technology platform for automated culture, stimulation, and recovery of small populations of cells (100 - 2,000 cells) in micro-scale volumes (1 - 20 μl). The platform consists of a set of fibronectin-coated microcapillaries ("cell perfusion chambers"), within which micro-scale cultures are established, maintained, and stimulated; a digital microfluidics (DMF) device outfitted with "transfer" microcapillaries ("central hub"), which routes cells and reagents to and from the perfusion chambers; a high-precision syringe pump, which powers transport of materials between the perfusion chambers and the central hub; and an electronic interface that provides control over transport of materials, which is coordinated and automated via pre-determined scripts. As an example, we used the platform to facilitate study of transcriptional responses elicited in immune cells upon challenge with bacteria. Use of the platform enabled us to reduce consumption of cells and reagents, minimize experiment-to-experiment variability, and re-direct hands-on labor. Given the advantages that it confers, as well as its accessibility and versatility, our platform should find use in a wide variety of laboratories and applications, and prove especially useful in facilitating analysis of cells and stimuli that are available in only limited quantities.
机译:对培养细胞的研究(体外分析)为复杂的生物系统提供了重要的见识。常规的体外分析方法和设备非常适合研究毫升级体积(≥0.1ml)中的大量细胞(≥10 5 )。然而,在许多情况下,有必要或希望缩小培养尺寸以减少目的细胞和/或培养,刺激或加工所需的试剂的消耗。不幸的是,常规方法不支持对微型培养物的精确且可再现的操作,并且当前可用的基于微流体的自动化系统过于复杂且专用于大多数实验室的常规使用。为了解决这个问题,我们开发了一个简单而通用的技术平台,用于自动培养,刺激和回收小规模(1-20μl)细胞(100-2,000个细胞)。该平台由一组纤连蛋白包被的微毛细管(“细胞灌注室”)组成,在其中建立,维持和刺激微尺度培养。装有“转移”微毛细管(“中心集线器”)的数字微流控(DMF)设备,该设备可将细胞和试剂送入灌注室或从灌注室引出;高精度注射泵,用于驱动灌注室和中心针座之间的物料运输;电子界面可控制物料的运输,并通过预定脚本进行协调和自动化。例如,我们使用该平台来促进研究细菌攻击后免疫细胞中引起的转录反应。该平台的使用使我们能够减少细胞和试剂的消耗,最大程度地减少实验之间的差异,并重新安排动手工作。鉴于其所赋予的优势以及可访问性和多功能性,我们的平台应可在各种实验室和应用中找到用途,并且在促进仅有限数量的细胞和刺激物分析方面特别有用。

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