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A microfluidic chip carrier including temperature control and perfusion system for long-term cell imaging

机译:一种微流体芯片载体,包括用于长期细胞成像的温度控制和灌注系统

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摘要

Microfluidic devices are widely used for biomedical applications but there is still a lack of affordable, reliable and user-friendly systems for transferring microfluidic chips from an incubator to a microscope while maintaining physiological conditions when performing microscopy. The presented carrier represents a cost-effective option for sustaining environmental conditions of microfluidic chips in combination with minimizing the device manipulation required for reagent injection, media exchange or sample collection. The carrier, which has the outer dimension of a standard well plate size, contains an integrated perfusion system that can recirculate the media using piezo pumps, operated in either continuous or intermittent modes (50–1000?μl/min). Furthermore, a film resistive heater made from 37?μm-thick copper wires, including temperature feedback control, was used to maintain the microfluidic chip temperature at 37?°C when outside the incubator. The heater characterisation showed a uniform temperature distribution along the chip channel for perfusion flow rates up to 10?μl/min. To demonstrate the feasibility of our platform for long term cell culture monitoring, mouse brain endothelial cells (bEnd.3) were repeatedly monitored for a period of 10?days, demonstrating a system with both the versatility and the potential for long imaging in microphysiological system cell cultures.
机译:微流体装置广泛用于生物医学应用,但仍然缺乏可负担得起,可靠和用户友好的系统,用于将微流体芯片从培养箱转移到显微镜,同时在进行显微镜时保持生理条件。所提出的载体代表了用于维持微流体芯片的环境条件的成本效益的选择,与最小化试剂注射,介质交换或样品收集所需的装置操纵。具有标准孔板尺寸的外尺寸的载体含有集成的灌注系统,其可以使用压电泵再循环介质,以连续或间歇模式(50-1000〜μl/ min)操作。此外,在培养箱外,使用由37Ω厚的铜线制成的薄膜电阻加热器,包括温度反馈控制,在37°C中保持微流体芯片温度。加热器表征显示沿芯片通道的均匀温度分布,用于灌注流速高达10≤μL/ min。为了证明我们的长期细胞培养监测平台的可行性,将小鼠脑内皮细胞(弯曲弯曲)重复监测为10?天的时间,展示了一种系统,具有多功能性和微生物学系统中的长成像的可能性细胞培养物。

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