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Optofluidic platform to investigate cell community behavior in microenvironments

机译:光流平台研究微环境中的细胞群落行为

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An important aspect of cell biology is to study the effect of micro-environmental conditions on cell growth. This is usually achieved by culturing cells in macro bioreactors, followed by either cell growth quantification through measurement of optical density (OD) or imaging cells over a period of time using conventional microscopes to look at morphological characteristics of the cell. The presented work proposes an optofluidic platform to study nutrient responses in cell communities. A microfluidic cell culture device has been designed which generates nutrient gradients across multiple chambers where colonies of cells could be grown and maintained. The project further demonstrates a portable cellphone based microscopy platform to which the microfluidic device is augmented and the system acts as an integrated lab-on-chip platform for live cell imaging. The performance of the optofluidic platform has been evaluated by growing cells in the microfluidic chambers, characterizing nutrient mixing in the device and subsequent imaging of cells using the designed portable microscope.
机译:细胞生物学的一个重要方面是研究微环境条件对细胞生长的影响。这通常是通过在大型生物反应器中培养细胞,然后通过测量光密度(OD)或通过使用常规显微镜观察细胞在一段时间内的细胞形态特征对细胞生长进行定量来实现的。提出的工作提出了一个光流平台来研究细胞群落中的营养反应。已经设计了一种微流体细胞培养装置,该装置可以在多个室中产生营养梯度,在该室中可以生长和维持细胞菌落。该项目进一步演示了基于便携式手机的显微镜平台,该平台上增加了微流控设备,该系统充当了用于活细胞成像的集成芯片实验室平台。通过在微流控室中生长细胞,表征设备中的营养混合以及随后使用设计的便携式显微镜对细胞成像,可以评估光流平台的性能。

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