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Microfluidics and numerical simulation as methods for standardization of zebrafish sperm cell activation

机译:微流控和数值模拟作为斑马鱼精子细胞激活标准化的方法

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摘要

Sperm cell activation plays a critical role in a range of biological and engineering processes, from fertilization to cryopreservation protocol evaluation. Across a range of species, ionic and osmotic effects have been discovered that lead to activation. Sperm cells of zebrafish (Danio rerio) initiate motility in a hypoosmotic environment. In this study, we employ a microfluidic mixer for the purpose of rapidly diluting the extracellular medium to initiate the onset of cell motility. The use of a microchannel offers a rapid and reproducible mixing profile throughout the device. This greatly reduces variability from trial to trial relative to the current methods of analysis. Coupling these experiments with numerical simulations, we were able to investigate the dynamics of intracellular osmolality as each cell moves along its path through the micromixer. Our results suggest that intracellular osmolality, and hence intracellular ion concentration, only slightly decreases, contrary to the common thought that larger changes in these parameters are required for activation. Utilizing this framework, microfluidics for controlled extracellular environments and associated numerical modeling, has practical applicability in standardizing high-throughput aquatic sperm activation, and more fundamentally, investigations of the intracellular environment leading to motility.
机译:从受精到冷冻保存方案评估,精子细胞的活化在一系列生物学和工程过程中起着至关重要的作用。在各种物种中,已发现导致激活的离子和渗透作用。斑马鱼(达尼奥里约)的精子细胞在低渗环境下开始运动。在这项研究中,我们采用微流混合器的目的是快速稀释细胞外培养基以启动细胞运动的发作。微通道的使用可在整个设备中提供快速且可重现的混合曲线。相对于当前的分析方法,这极大地减少了试验之间的差异。将这些实验与数值模拟相结合,我们能够研究每个细胞沿着其通过微混合器的路径移动时细胞内渗透压的动态变化。我们的结果表明,细胞内的重量克分子渗透压浓度以及细胞内的离子浓度仅略有降低,这与通常认为激活这些参数需要更大的改变相反。利用该框架,用于受控细胞外环境的微流体学和相关的数值模型,在标准化高通量水生精子活化方面具有实际适用性,更重要的是,对导致运动的细胞内环境进行了研究。

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