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Culture and Sampling of Primary Adipose Tissue in Practical Microfluidic Systems

机译:实用微流体系统中原发性脂肪组织的培养和采样

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摘要

Microfluidic culture of primary adipose tissue allows for reduced sample and reagent volumes as well as constant media perfusion of the cells. By continuously flowing media over the tissue, microfluidic sampling systems can more accurately mimic vascular flow in vivo. Quantitative measurements can be performed on or off chip to provide time-resolved secretion data, furthering insight into the dynamics of the function of adipose tissue. Buoyancy resulting from the large lipid storage capacity in this tissue presents a unique challenge for culture, and it is important to account for this buoyancy during microdevice design. Herein, we describe approaches for microfluidic device fabrication that utilize 3D-printed interface templating to help counteract cell buoyancy. We apply such methods to the culture of both isolated, dispersed primary adipocytes and epididymal adipose explants. To facilitate more widespread adoption of the methodology, the devices presented here are designed for user-friendly operation. Only handheld syringes are needed to control flow, and devices are inexpensive and disposable.
机译:原发性脂肪组织的微流培养可减少样品和试剂的体积,并持续进行细胞的培养基灌注。通过使介质连续流过组织,微流体采样系统可以更准确地模拟体内的血管流动。可以在芯片上或芯片外执行定量测量,以提供时间分辨的分泌数据,从而进一步了解脂肪组织功能的动态变化。由这种组织中大量脂质存储能力产生的浮力对培养提出了独特的挑战,因此在微型设备设计过程中应对这种浮力很重要。在这里,我们描述了利用3D打印的界面模板来帮助抵消细胞浮力的微流体设备制造方法。我们将这种方法应用于分离的,分散的原代脂肪细胞和附睾脂肪外植体的培养。为了促进该方法的更广泛采用,此处介绍的设备设计用于用户友好的操作。仅需要手持式注射器来控制流量,并且设备便宜且可抛弃。

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