Department of Electrical Engineering and Computer Science, Florida Atlantic University, Boca Raton, FL 33431, USA.
Asghar-Lab, Micro and Nanotechnology in Medicine, College of Engineering and Computer Science, Boca Raton, FL 33431, USA.
Analyst. 2022 Apr 11;147(8):1589-1597. doi: 10.1039/d1an02311j.
For conception, sperm cells travel towards the oocyte. This journey is accomplished by only a few sperm cells, following various guidance mechanisms. Of these mechanisms, rheotaxis plays a significant role in guiding the sperm over a long distance. By taking advantage of this natural rheotaxis behavior of sperm, we have developed a microfluidic chip that isolates healthy sperm cells. The developed chip consists of different chambers separated by microchannels that facilitate separation of motile sperm cells from unprocessed semen samples with the help of fluid flow. The sperm cells are subjected to different velocities in different parts of the chip that direct functional sperm towards the collection chamber utilizing positive rheotaxis. The results from the developed microfluidic chip (with 0.5 μL min flow rate) have shown almost 100% motility, a significantly higher percentage of morphologically normal sperm cells with lesser sperm DNA fragmentation than the control (no-flow) and raw semen sample. This chip satisfies the need of a clinical setting as it is low-cost, easy to operate and uses a small semen volume for sperm sorting.
为了受孕,精子细胞朝着卵子游动。这个过程只有少数精子细胞能够完成,它们遵循着各种导向机制。在这些机制中,趋流性在引导精子远距离游动方面起着重要作用。我们利用精子的这种自然趋流性,开发了一种微流控芯片,可以分离健康的精子细胞。该芯片由不同的腔室组成,通过微通道隔开,在流体流动的帮助下,从未处理的精液样本中分离出活动的精子细胞。在芯片的不同部分,精子细胞会受到不同的速度影响,从而利用正趋流性将功能正常的精子引导到收集腔室。从开发的微流控芯片(流速为 0.5 μL min)中得到的结果显示,精子的运动能力几乎达到 100%,形态正常的精子比例明显更高,精子 DNA 碎片化程度也比对照(无流动)和原始精液样本更低。这种芯片满足了临床应用的需求,因为它成本低、易于操作,并且只需要少量的精液样本用于精子分选。