Department of Mechanical and Industrial Engineering, University of Toronto, 5 King's College Rd, Toronto, Ontario M5S 3G8, Canada.
Lab Chip. 2019 Jun 25;19(13):2161-2167. doi: 10.1039/c9lc00209j.
Selection of high-quality sperm is critical to the success of assisted reproductive technologies. Clinical screening for top sperm has long focused on sperm swimming ability when following boundaries or when fully free of constraints. In this work, we demonstrate a sperm selection approach with parallel 2 μm tall confined selection channels that prohibit rotation of the sperm head and require planar swimming. We demonstrate that a planar swimming subpopulation of sperm capable of entering and navigating these channels has DNA integrity superior to the freely-swimming motile or raw sperm populations over a wide range of semen sample qualities. The DNA integrity of the selected sperm was significantly higher than that of the corresponding raw samples for donor samples and clinical patient samples, respectively. In side-by-side testing, this method outperforms current clinical selection methods, density gradient centrifugation and swim-up, as well as sperm selected via general motility. Planar swimming represents a viable sperm selection mechanism with the potential to improve outcomes for couples and offspring.
选择高质量的精子对于辅助生殖技术的成功至关重要。长期以来,临床筛选优质精子一直集中在精子在遵循边界或完全不受约束时的游动能力上。在这项工作中,我们展示了一种使用平行 2μm 高的受限选择通道的精子选择方法,该方法阻止精子头部旋转并要求精子平面游动。我们证明了能够进入和导航这些通道的平面游动精子亚群的 DNA 完整性优于广泛的精液样本质量范围内的自由游动的运动精子或原始精子群体。所选精子的 DNA 完整性分别显著高于相应的原始样本,对于供体样本和临床患者样本都是如此。在并排测试中,这种方法优于当前的临床选择方法,如密度梯度离心和游出法,以及通过一般运动选择的精子。平面游动代表了一种可行的精子选择机制,有可能改善夫妇和后代的结果。