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首页> 外文期刊>Cryo Letters >NUMERICAL AND EXPERIMENTAL INVESTIGATION ON WATER-ME2SO MIXING IN MICROFLUIDIC DEVICE FOR OOCYTE CRYOPRESERVATION
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NUMERICAL AND EXPERIMENTAL INVESTIGATION ON WATER-ME2SO MIXING IN MICROFLUIDIC DEVICE FOR OOCYTE CRYOPRESERVATION

机译:用于卵母细胞冷冻保存的微流体装置中水Me2SO混合的数值和实验研究

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摘要

BACKGROUND: Oocyte vitrification is a practical tool in assisted reproductive technology and fertility preservation. However, vitrification requires high concentration of cryoprotectants (CPAs), which may cause osmotic injury and is toxic to oocytes during the addition and removal process of CPAs. OBJECTIVE: To minimize osmotic and toxic injuries, a microfluidic device was designed to provide continuous concentration changes of CPAs to oocytes. METHODS: Numerical simulations were first used to investigate the effects of geometric parameters of microchannel on water-Me2SO mixing performance. A microfluidic device was then fabricated via soft lithography. Distilled water and 30% Me2SO containing 1mM fluorescence dye FITC were mixed using the microfluidic device to verify the CPA diffusion behavior. RESULTS: The mixing performance in the microfluidic device strongly depends on the channel geometry and the flow rates of the fluids. Linear CPA loading profiles with diverse slopes were obtained by controlling the flow rate and the loading time of CPA and the buffer solution in the microfluidic device. CONCUSION: The designed microfluidic device can yield linear CPA loading profiles with different slopes.
机译:背景:Oocyte玻璃化是辅助生殖技术和生育保存的实用工具。然而,玻璃化需要高浓度的冷冻保护剂(CPA),这可能导致渗透损伤,并且在CPA的添加和去除过程中对卵母细胞有毒。目的:为了最大限度地减少渗透和毒性损伤,设计了一种微流体装置,以提供CPA对卵母细胞的连续浓度变化。方法:首先使用数值模拟来研究微通道几何参数对水ME2SO混合性能的影响。然后通过软光刻制造微流体装置。使用微流体装置混合蒸馏水和30%ME2SO含有1mM荧光染料FITC的ME2SO,以验证CPA扩散行为。结果:微流体装置中的混合性能强烈取决于通道几何形状和流体的流速。通过控制微流体装置中的CPA和缓冲溶液的流速和加载时间来获得具有不同斜坡的线性CPA装载曲线。弹出:设计的微流体装置可以产生具有不同斜坡的线性CPA装载曲线。

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