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Caring for cells in microsystems: principles and practices of cell-safe device design and operation

机译:关注微型系统中的细胞:细胞安全装置设计和操作的原理和实践

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摘要

Microfluidic device designers and users continually question whether cells are happy' in a given microsystem or whether they are perturbed by micro-scale technologies. This issue is normally brought up by engineers building platforms, or by external reviewers (academic or commercial) comparing multiple technological approaches to a problem. Microsystems can apply combinations of biophysical and biochemical stimuli that, although essential to device operation, may damage cells in complex ways. However, assays to assess the impact of microsystems upon cells have been challenging to conduct and have led to subjective interpretation and evaluation of cell stressors, hampering development and adoption of microsystems. To this end, we introduce a framework that defines cell health, describes how device stimuli may stress cells, and contrasts approaches to measure cell stress. Importantly, we provide practical guidelines regarding device design and operation to minimize cell stress, and recommend a minimal set of quantitative assays that will enable standardization in the assessment of cell health in diverse devices. We anticipate that as microsystem designers, reviewers, and end-users enforce such guidelines, we as a community can create a set of essential principles that will further the adoption of such technologies in clinical, translational and commercial applications.
机译:微流体设备设计人员和用户不断质疑细胞是否在给定的微系统中或它们是否被微尺度技术扰乱。这个问题通常由工程师建筑平台或通过外部审阅者(学术或商业)比较解决问题的外部审阅者。微系统可以应用生物物理和生化刺激的组合,尽管对装置操作至关重要,但可能以复杂的方式损坏细胞。然而,评估微系统对细胞对细胞的影响的测定是挑战的,导致了对细胞压力源的主观解释和评估,妨碍了发展和通过微系统。为此,我们介绍了一个框架,该框架定义了细胞健康,描述了器件刺激可以如何应激细胞,并且对比测量细胞应力的方法。重要的是,我们提供有关设备设计和操作的实用指南,以最大限度地减少细胞应激,并推荐最小的定量测定,这将能够在不同设备中评估细胞健康的标准化。我们预计作为微系统设计师,审稿人和最终用户执行此类指导方针,我们作为一个社区可以创建一组基本原则,以进一步通过临床,翻译和商业应用中的这种技术。

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