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Chemotactic behavior of spermatozoa captured using a microfluidic chip

机译:使用微流控芯片捕获的精子趋化行为

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摘要

Chemotaxis, as a mechanism for sperm guidance in vivo, is an enigma which has been difficult to demonstrate. To address this issue, various devices have been designed to study sperm chemotaxis in vitro. Limitations of traditional chemotaxis devices were related to the inability to maintain a stable concentration gradient as well as track single sperm over long times. Microfluidics technology, which provides superior control over fluid flow, has been recently used to generate stable concentration gradients for investigating the chemotactic behavior of several cell types including spermatozoa. However, the chemotactic behavior of sperm has not been unequivocally demonstrated even in these studies due to the inability to distinguish it from rheotaxis, thermotaxis, and chemokinesis. For instance, the presence of fluid flow in the microchannels not only destabilizes the concentration gradient but also elicits a rheotactic response from sperm. In this work, we have designed a microfluidic device which can be used to establish both, a uniform concentration and a uniform concentration gradient in a stationary fluid. By facilitating measurement of sperm response in ascending, descending ,and uniform chemoattractant concentration, the assay could isolate sperm chemotactic response from rheotaxis and chemokinesis. The device was validated using acetylcholine, a known chemoattractant and further tested with rat oviductal fluid from the estrus phase.
机译:作为体内精子引导的机制,趋化性是一个难以证明的谜。为了解决这个问题,已经设计了各种装置来体外研究精子趋化性。传统趋化装置的局限性与无法保持稳定的浓度梯度以及长时间追踪单个精子有关。最近,微流控技术可提供对流体流动的出色控制,已被用于生成稳定的浓度梯度,用于研究包括精子在内的几种细胞类型的趋化行为。然而,由于无法将其与流变,趋热性和趋化性区别开来,即使在这些研究中也没有明确证明精子的趋化行为。例如,微通道中流体流动的存在不仅使浓度梯度不稳定,而且引起精子的流变反应。在这项工作中,我们设计了一种微流体装置,该装置可用于在固定流体中建立均匀浓度和均匀浓度梯度。通过方便地测量精子在上升,下降和均匀的趋化剂浓度中的反应,该测定法可将精子的趋化性反应与流变和趋化性分开。使用已知的趋化剂乙酰胆碱验证了该设备,并用发情期的大鼠输卵管液进行了进一步测试。

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