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A drug-compatible and temperature-controlled microfluidic device for live-cell imaging

机译:用于活细胞成像的药物兼容且温度可控的微流控设备

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摘要

Monitoring cellular responses to changes in growth conditions and perturbation of targeted pathways is integral to the investigation of biological processes. However, manipulating cells and their environment during live-cell-imaging experiments still represents a major challenge. While the coupling of microfluidics with microscopy has emerged as a powerful solution to this problem, this approach remains severely underexploited. Indeed, most microdevices rely on the polymer polydimethylsiloxane (PDMS), which strongly absorbs a variety of molecules commonly used in cell biology. This effect of the microsystems on the cellular environment hampers our capacity to accurately modulate the composition of the medium and the concentration of specific compounds within the microchips, with implications for the reliability of these experiments. To overcome this critical issue, we developed new PDMS-free microdevices dedicated to live-cell imaging that show no interference with small molecules. They also integrate a module for maintaining precise sample temperature both above and below ambient as well as for rapid temperature shifts. Importantly, changes in medium composition and temperature can be efficiently achieved within the chips while recording cell behaviour by microscopy. Compatible with different model systems, our platforms provide a versatile solution for the dynamic regulation of the cellular environment during live-cell imaging.
机译:监测细胞对生长条件变化和靶向途径扰动的反应是生物学过程研究不可或缺的部分。然而,在活细胞成像实验中操纵细胞及其环境仍然是一个重大挑战。尽管微流体与显微镜的结合已成为解决此问题的有力方法,但这种方法仍未得到充分利用。实际上,大多数微型设备都依赖于聚合物聚二甲基硅氧烷(PDMS),该聚合物可以强烈吸收细胞生物学中常用的各种分子。微系统对细胞环境的这种影响妨碍了我们精确调节培养基组成和微芯片内特定化合物浓度的能力,这影响了这些实验的可靠性。为克服这一关键问题,我们开发了专用于活细胞成像的新型无PDMS微型设备,该设备不显示对小分子的干扰。它们还集成了一个模块,用于维持高于和低于环境温度的精确样品温度以及快速的温度变化。重要的是,可以在芯片内有效地实现培养基成分和温度的变化,同时通过显微镜记录细胞行为。与不同的模型系统兼容,我们的平台为活细胞成像过程中细胞环境的动态调节提供了通用的解决方案。

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