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Separation of spermatozoa from erythrocytes using their tumbling mechanism in a pinch flow fractionation device

机译:利用捏合流分离装置中的翻转机制从红细胞中分离精子

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摘要

Men suffering from azoospermia can father a child, by extracting spermatozoa from a testicular biopsy sample. The main complication in this procedure is the presence of an abundance of erythrocytes. Currently, the isolation of the few spermatozoa from the sample is manually performed due to ineffectiveness of filtering methods, making it time consuming and labor intensive. The spermatozoa are smaller in both width and height than any other cell type found in the sample, with a very small difference compared with the erythrocyte for the smallest, making this not the feature to base the extraction on. However, the length of the spermatozoon is 5× larger than the diameter of an erythrocyte and can be utilized. Here we propose a microfluidic chip, in which the tumbling behavior of spermatozoa in pinched flow fractionation is utilized to separate them from the erythrocytes. We show that we can extract 95% of the spermatozoa from a sample containing 2.5% spermatozoa, while removing around 90% of the erythrocytes. By adjusting the flow rates, we are able to increase the collection efficiency while slightly sacrificing the purity, tuning the solution for the available sample in the clinic.
机译:通过从睾丸活检样本中提取精子,患有无精症的男人可以生下一个孩子。该手术的主要并发症是大量红细胞的存在。目前,由于过滤方法无效,需要手动从样品中分离出少数精子,这既费时又费力。精子的宽度和高度均比样品中发现的其他任何类型的细胞都要小,与最小的红细胞相比差异很小,这使其无法作为提取的基础。但是,精子的长度比红细胞的直径大5倍,可以利用。在这里,我们提出了一种微流控芯片,其中精子在挤压流分离中的滚动行为被用来将它们与红细胞分离。我们表明,我们可以从含有2.5%精子的样品中提取95%的精子,同时去除约90%的红细胞。通过调节流速,我们能够在略微牺牲纯度的同时提高收集效率,从而为诊所中可用的样品调整溶液。

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