Department of Medical Physics and Biomedical Engineering, School of Medicine, Shahid Beheshti University of Medical Sciences, Tehran, Iran.
IVF Center, Taleghani Hospital, Shahid Beheshti University of Medical Sciences, Tehran, Iran.
Analyst. 2021 Nov 22;146(23):7230-7239. doi: 10.1039/d1an01525g.
A triplet spiral channel coupled with cross-flow filtration has been designed and fabricated in an effort to separate sperm cells from either semen or simulated testicular sperm extraction (TESE) samples. This device separates a fraction of cells from the sample by taking advantage of inertial focusing combined with hydrodynamic filtration in multiple micro-slits. Compared to the conventional swim-up technique, the proposed microfluidic device is capable of efficiently separating sperm cells without any tedious semen sample processing and centrifugation steps with a lower level of reactive oxygen species and DNA fragmentation. The device processing capability on the simulated TESE samples confirmed its proficiency in retrieving sperm cells from the samples with an approximate yield of 76%. Conclusively, the introduced microfluidic device can pave the path to proficiently separate sperm cells in assisted reproductive treatment cycles.
设计并制造了一种三重螺旋通道与横流过滤相结合的装置,以从精液或模拟睾丸精子提取(TESE)样本中分离精子细胞。该装置通过在多个微狭缝中利用惯性聚焦和流体动力学过滤,从样品中分离出一部分细胞。与传统的泳动技术相比,所提出的微流控装置能够在不进行繁琐的精液样品处理和离心步骤的情况下,高效地分离精子细胞,同时产生较低水平的活性氧和 DNA 碎片。该装置在模拟 TESE 样本上的处理能力证实了其从样本中提取精子细胞的能力,其产量约为 76%。总之,所介绍的微流控装置为辅助生殖治疗周期中高效分离精子细胞铺平了道路。