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A novel microfluidic device for selecting human sperm to increase the proportion of morphologically normal, motile sperm with uncompromised DNA integrity

机译:一种新颖的微流控装置,用于选择人类精子,以增加形态正常的能动精子的比例,并且具有完整的DNA完整性

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Objective: We assessed a microfluidic method of sperm selection. Methods: Sperm was collected from 33 infertile, but otherwise healthy donors. We established a microfluidic device consisting of a 250 ??m diameter microchannel of 3 cm in length, to mimic the oviduct. Human tubal fluid was pumped through the tubule at 500 ??m sa?’1, and 5 ml sperm was added. The movement of sperm was observed for 30 min using a Live Cell Imaging System. Sperm motility was assessed by using a Computer-aided Sperm Analysis System, morphological parameters were observed by conventional light microscopy and transmission electron microscopy, and DNA integrity was measured by comet assay. We compared the fitness of sperm selected using a microfluidic device with pre-selection sperm and sperm selected by the density gradient and swim-up method. Results: Microfluidic selection improved motility parameters of all 33 samples. Sperm selected by using the microfluidic device had higher rates of average ratio of sperm fast swimming forward average sperm activity ratio, value derivation for the curvilinear, value derivation for straight-line velocities, value derivation for average path, amplitude of lateral head displacement, amplitude of cross-frequency, progression ratios of linearity, progression ratios of wobble, progression ratios of straightness, and lower rates of deformity than sperm selected using conventional methods (p 0.05). Furthermore, the DNA integrity of sperm selection by our device was better maintained than that selected by traditional methods (p 0.05). Conclusion: This method can not only minimize damage to the sperm structure, but also increase the effectiveness of selection.
机译:目的:我们评估了精子选择的微流控方法。方法:从33名不育但健康的供体中收集精子。我们建立了一个微流体装置,该装置由直径250厘米,长度为3厘米的微通道组成,以模仿输卵管。将人输卵管液以500 mm sa?1的压力泵入输卵管,并加入5 ml精子。使用活细胞成像系统观察精子运动30分钟。使用计算机辅助精子分析系统评估精子活力,通过常规光学显微镜和透射电子显微镜观察形态学参数,并通过彗星试验测量DNA完整性。我们将使用微流控设备选择的精子的适合度与预选的精子和通过密度梯度和泳动法选择的精子进行了比较。结果:微流体选择改善了所有33个样品的运动参数。使用微流控装置选择的精子的平均精子比率较高,快速游动向前的平均精子活动比,曲线的值推导,直线速度的值推导,平均路径的值推导,平均头部位移的幅度,头部的横向幅度,幅度与使用传统方法选择的精子相比,交叉频率,线性的渐进比率,摆动的渐进比率,直线度的渐进比率以及较低的畸变率(p <0.05)。此外,与传统方法相比,我们的设备能够更好地保持精子选择的DNA完整性(p <0.05)。结论:该方法不仅可以最大程度地减少对精子结构的损害,而且可以提高选择的效率。

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