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Detecting cell-secreted growth factors in microfluidic devices using bead-based biosensors

机译:使用基于微珠的生物传感器检测微流控设备中细胞分泌的生长因子

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摘要

Microfluidic systems provide an interesting alternative to standard macroscale cell cultures due to the decrease in the number of cells and reagents as well as the improved physiology of cells confined to small volumes. However, the tools available for cell-secreted molecules inside microfluidic devices remain limited. In this paper, we describe an integrated microsystem composed of a microfluidic device and a fluorescent microbead-based assay for the detection of the hepatocyte growth factor (HGF) and the transforming growth factor (TGF)-β1 secreted by primary hepatocytes. This microfluidic system is designed to separate a cell culture chamber from sensing chambers using a permeable hydrogel barrier. Cell-secreted HGF and TGF-β1 diffuse through the hydrogel barrier into adjacent sensing channels and are detected using fluorescent microbead-based sensors. The specificity of sensing microbeads is defined by the choice of antibodies; therefore, our microfluidic culture system and sensing microbeads may be applied to a variety of cells and cell-secreted factors.
机译:由于减少了细胞和试剂的数量,并且限制了小体积的细胞的生理功能,微流体系统为标准的大规模细胞培养提供了有趣的替代方法。然而,可用于微流体装置内的细胞分泌分子的工具仍然有限。在本文中,我们描述了一个由微流体装置和基于荧光微珠的测定法组成的集成微系统,用于检测原代肝细胞分泌的肝细胞生长因子(HGF)和转化生长因子(TGF)-β1。该微流体系统设计为使用可渗透水凝胶屏障将细胞培养室与传感室分隔开。细胞分泌的HGF和TGF-β1通过水凝胶屏障扩散到相邻的传感通道中,并使用基于荧光微珠的传感器进行检测。感测微珠的特异性取决于抗体的选择;因此,我们的微流控培养系统和传感微珠可应用于多种细胞和细胞分泌因子。

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