Laminar stream-based microfluidic chip with high efficiency for human sperm motility sorting

Hui-Ting Fu, D. Yao, Hung-Ju Huang, Chin-Jung Li, Hong-Yuan Huang
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引用次数: 2

Abstract

A novel laminar stream-based microfluidic chip that can serve as the high efficient technique for human sperm motility sorting through the use of flow cytometry was proposed in this study. Recently, the selection of good sperms in semen plays an important role in the reproductive medicine. However, the traditional sorting methods are normally expensive and time consuming. This modified microfluidic chip provided a new selection, which had advantages of low-cost, high-precision, and disposable. This paper was proposed and tested the interactions between laminar flow and sperm activity. Due to the laminar flow in a different direction, the semen samples were loaded into a curve laminar flow through straight-curve stream and it would offer a y component force for dead sperms to be selected. In addition, the semen samples were loaded into a straight laminar flow and the results showed that most of the proportion of motile sperms with lateral activity can swim across the two fluid boundaries to be sorted. From the results of flow cytometry analysis, the injected semen sample from a straight inlet with the counted percentage of living sperms was 92.68% by the observation in outlet reservoir. Therefore, the microfluidic chip with remarkable sperm motility sorting has the potential for reproductive medicine.
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基于层流的高效人类精子活力分选微流控芯片
本研究提出了一种新型的层流微流控芯片,该芯片可作为流式细胞术对人类精子活力进行高效分选的技术。近年来,精液中优质精子的选择在生殖医学中发挥着重要作用。然而,传统的分拣方法通常既昂贵又耗时。这种改进的微流控芯片具有成本低、精度高、可一次性使用等优点,提供了一种新的选择。本文提出并验证了层流与精子活性之间的相互作用。由于层流方向不同,通过直曲线流将精液样本装入曲线层流,为选择死精子提供y分力。此外,将精液样本装入一个直层流中,结果表明,大部分具有横向活动的运动精子比例可以游过两个流体边界进行分类。流式细胞术分析结果显示,经出口库观察,直进口注射的精液标本活精子计数率为92.68%。因此,精子运动分选效果显著的微流控芯片在生殖医学方面具有潜力。
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