Tekiyeh Mohammad Mahdi, Zand Mahdi Moghimi, Movahedin Mansoureh, Azizi Zahra, Sarbandi Iman Ramazani
Small Medical Devices, BioMEMS & LoC Lab, Department of Mechanical Engineering, College of Engineering, University of Tehran, Tehran, 14399-55961, Iran.
Anatomical Sciences Lab, Department of Medical Sciences, Tarbiat Modares University, Tehran, 14117-13116, Iran.
Sci Rep. 2025 Jul 11;15(1):25160. doi: 10.1038/s41598-025-09884-1.
Sperm separation is pivotal in Assisted Reproductive Technology to address male infertility issues such as low sperm concentration or impaired motility. Traditional microfluidic devices, despite their fair success, often fall short due to complex fabrication and use, or lack of direct sample extraction methods. Our research introduces a microfluidic device designed to enhance sperm quality, focusing on improved motility and morphology, while remaining simple to fabricate and use in infertility clinics. The device features four chambers interconnected by channels, engineered to establish low shear rate limits, facilitating high-quality sperm separation. Utilizing the principle of rheotaxis, where superior sperm swim against the flow, our system concentrates top-quality sperm in designated chambers. A key feature of the device is its ability to use raw semen, eliminating the need for pre-washing. Clinical trials with both washed human sperm samples and raw semen demonstrate the device's efficacy, achieving up to 100% sperm isolation and morphological improvements in under 5 min. This approach overcomes the throughput constraints of traditional microfluidic methods, leveraging rheotaxis, near-boundary swimming, and parallelization to increase selected sperm concentration. This advancement has the potential to substantially improve the effectiveness of fertility treatments, offering new hope to individuals facing conception challenges.
精子分离在辅助生殖技术中对于解决男性不育问题(如精子浓度低或活力受损)至关重要。传统的微流控装置尽管取得了一定成功,但由于制造和使用复杂,或缺乏直接的样本提取方法,往往存在不足。我们的研究引入了一种旨在提高精子质量的微流控装置,重点在于改善精子活力和形态,同时在不育诊所中易于制造和使用。该装置具有四个通过通道相互连接的腔室,其设计目的是建立低剪切速率限制,以促进高质量精子的分离。利用趋流性原理,即优质精子逆着流动方向游动,我们的系统将优质精子集中在指定的腔室中。该装置的一个关键特性是能够使用未处理的精液,无需预先洗涤。对洗涤过的人类精子样本和未处理精液进行的临床试验证明了该装置的有效性,在不到5分钟的时间内实现了高达100%的精子分离和形态改善。这种方法克服了传统微流控方法的通量限制,利用趋流性、近边界游动和平行化来提高所选精子的浓度。这一进展有可能大幅提高生育治疗的效果,为面临受孕挑战的个人带来新的希望。