Integrated PDMS/CMOS Microsystem for Autonomous Incubation and Imaging in Cell Culture Studies

J.M. Blain Christen, A. Andreou
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引用次数: 4

Abstract

We discuss the design, fabrication and testing of a hybrid microsystem for stand-alone cell culture, incubation and imaging. The micro-incubator is engineered through the integration of two CMOS dies. The first for the heater and temperature sensor, and a second die for imaging. A multilayer PDMS (polydimethylsiloxane) structures is used to create not only the fluidic structures but to encapsulate the CMOS dies. The microfluidic features include fluidic channels, a 4 mm diameter, 30muL, culture well and a 25 micron thick PDMS membrane that covers the top of the culture well, acting as barrier to contaminants while allowing the cells to exchange gases with the ambient environment. The micro-incubator interface includes with a flexible polyimide ribbon cable and four fluidic ports. The complete structure has a size of (2.5times2.5times0.6 cm3). We have employed the device to successfully culture BHK-21 cells autonomously over a sixty hour period in ambient environment
集成PDMS/CMOS微系统在细胞培养研究中的自主孵化和成像
我们讨论了用于独立细胞培养、孵育和成像的混合微系统的设计、制造和测试。微型培养箱是通过集成两个CMOS芯片来设计的。第一个用于加热器和温度传感器,第二个用于成像。多层PDMS(聚二甲基硅氧烷)结构不仅用于创建流体结构,而且用于封装CMOS芯片。微流体的特点包括流体通道,直径4毫米,30muL,培养孔和25微米厚的PDMS膜,覆盖培养孔的顶部,作为污染物的屏障,同时允许细胞与周围环境交换气体。微型培养箱接口包括一个灵活的聚酰亚胺带状电缆和四个流体端口。完整的结构尺寸为(2.5 × 2.5 × 0.6 cm3)。我们利用该装置成功地在自然环境中培养了60小时以上的BHK-21细胞
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