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[用于混合冷冻保护剂的微流控芯片的设计与优化]

[Design and Optimization of Microfluidic Chips Used for Mixing Cryoprotectants].

作者信息

Zhou Xinli, Yi Xingyue, Zhou Nanfeng, Yang Yun

出版信息

Sheng Wu Yi Xue Gong Cheng Xue Za Zhi. 2016 Jun;33(3):461-5.

Abstract

Microfluidic chips can be used to realize continuous cryoprotectants(CPA)loading/unloading for oocytes,reducing osmotic damage and chemical toxicity of CPA.In this study,five different Y-shape microfluidic chips were fabricated to realize the continuous CPA loading/unloading.The effects of flow rate,entrance angle,aspect ratio and turning radius of microchannels on the mixing efficiency of microfluidic chips were analyzed quantitatively.The experimental results showed that with the decrease of flow rates,the increase of aspect ratios and the decrease of turning raradius of microchannel,the mixing length decreased and the mixing velocity was promoted,while the entrance angle had little effect on the mixing efficiency.However,the operating conditions and structural parameters of the chips in practical application should be determined based on an overall consideration of CPA loading/unloading time and machining accuracy.These results would provide a reference to the application of microfluidic chip in CPA mixing.

摘要

微流控芯片可用于实现对卵母细胞的连续冷冻保护剂(CPA)加载/卸载,减少CPA的渗透损伤和化学毒性。在本研究中,制备了五种不同的Y形微流控芯片以实现CPA的连续加载/卸载。定量分析了微通道的流速、入口角度、纵横比和转弯半径对微流控芯片混合效率的影响。实验结果表明,随着流速的降低、纵横比的增加以及微通道转弯半径的减小,混合长度减小且混合速度提高,而入口角度对混合效率影响较小。然而,在实际应用中,应综合考虑CPA加载/卸载时间和加工精度来确定芯片的操作条件和结构参数。这些结果将为微流控芯片在CPA混合中的应用提供参考。

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