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Accurate dispensing system for single oocytes using air ejection

机译:使用空气喷射对单个卵母细胞的精确分配系统

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摘要

In this study, we propose a new approach to increase the success rate of single-oocyte dispensing and investigate the subsequent viability of the dispensed oocytes. We used a pair of capacitance sensors placed in a microfluidic chip to detect the oocyte, and custom-designed a special buffer zone in the microchannel to decelerate the flow velocity and reduce the hydraulic pressure acting on the oocyte. In the buffer zone, a semicircular bay, formed by equally spaced micro-pillars, is used to stop the oocyte at the dispensing nozzle hole. Finally, the oocyte is ejected by airflow to the culture array. The novel feature of the developed microfluidic system is that the extraordinary improvement in success rate is accompanied by a lack of change in oocyte survival rate (as assessed by a comparison of survival rates before and after the dispensing procedure). By using this device, we achieved a highly accurate single-oocyte dispensing process with a success rate of 100%. The oocyte survival rate is approximately 70%, regardless of whether or not the oocyte is dispensed. The newly proposed system has the advantages of high operation speed and potential usage for two-dimensional micropatterning.
机译:在这项研究中,我们提出了一种新的方法来提高单卵母细胞分配的成功率,并研究随后分配的卵母细胞的生存能力。我们使用放置在微流控芯片中的一对电容传感器来检测卵母细胞,并在微通道中定制设计了特殊的缓冲区,以降低流速并降低作用在卵母细胞上的液压。在缓冲区中,由等间距的微柱形成的半圆形隔间用于将卵母细胞停在分配喷嘴孔处。最后,卵母细胞通过气流排出到培养阵列中。发达的微流控系统的新颖之处在于成功率的显着提高伴随着卵母细胞存活率缺乏变化(通过分配过程前后存活率的比较评估)。通过使用该设备,我们实现了高度准确的单卵母细胞分配过程,成功率为100%。不论是否分配卵母细胞,卵母细胞存活率均约为70%。新提出的系统具有高操作速度和二维微图案化的潜在用途的优点。

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