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A microfluidic optical platform for real-time monitoring of pH and oxygen in microfluidic bioreactors and organ-on-chip devices

机译:一个微流体光学平台用于实时监测微流体生物反应器和芯片上装置中的pH和氧气

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摘要

There is a growing interest to develop microfluidic bioreactors and organ-on-chip platforms with integrated sensors to monitor their physicochemical properties and to maintain a well-controlled microenvironment for cultured organoids. Conventional sensing devices cannot be easily integrated with microfluidic organ-on-chip systems with low-volume bioreactors for continual monitoring. This paper reports on the development of a multi-analyte optical sensing module for dynamic measurements of pH and dissolved oxygen levels in the culture medium. The sensing system was constructed using low-cost electro-optics including light-emitting diodes and silicon photodiodes. The sensing module includes an optically transparent window for measuring light intensity, and the module could be connected directly to a perfusion bioreactor without any specific modifications to the microfluidic device design. A compact, user-friendly, and low-cost electronic interface was developed to control the optical transducer and signal acquisition from photodiodes. The platform enabled convenient integration of the optical sensing module with a microfluidic bioreactor. Human dermal fibroblasts were cultivated in the bioreactor, and the values of pH and dissolved oxygen levels in the flowing culture medium were measured continuously for up to 3 days. Our integrated microfluidic system provides a new analytical platform with ease of fabrication and operation, which can be adapted for applications in various microfluidic cell culture and organ-on-chip devices.
机译:开发带有集成传感器的微流体生物反应器和芯片上器官平台的兴趣日益增长,以监测其理化特性并为培养的类器官维持良好控制的微环境。传统的传感设备无法轻松地与带有小容量生物反应器的微流体芯片上系统集成在一起,以进行连续监控。本文报道了用于动态测量培养基中pH和溶解氧水平的多分析物光学传感模块的开发。感应系统是使用包括发光二极管和硅光电二极管的低成本电光构建的。感测模块​​包括用于测量光强度的光学透明窗口,并且该模块可以直接连接到灌注生物反应器,而无需对微流体设备设计进行任何特定的修改。开发了一种紧凑,用户友好且低成本的电子界面,以控制光学传感器和光电二极管的信号采集。该平台使光学传感模块与微流生物反应器的便捷集成成为可能。在生物反应器中培养人真皮成纤维细胞,连续3天连续测量流动培养基中的pH值和溶解氧水平。我们集成的微流控系统提供了易于制造和操作的新分析平台,可适用于各种微流控细胞培养和芯片上的设备。

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