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On-chip oocyte denudation from cumulus-oocyte complexes for assisted reproductive therapy

机译:从Cumuly-oocyte复合物进行辅助生殖疗法的片上卵母细胞剥落

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摘要

Human infertility can be treated using assisted reproductive technology (ART) such as intracytoplasmic sperm injection (ICSI). But current ART techniques suffer from multiple cumbersome processes requiring technically skilled personnel. Microfluidics technologies offer unique opportunities to streamline ART procedures, reduce stress imposed upon gametes and embryos, and minimize the operator-to-operator variability. However, there have been no automated and continuous processing systems that can reduce the dependence on well-trained embryologists to obtain ICSI-ready oocytes from patients. In this study, using mouse models, we developed a microfluidic device to denude oocytes from the surrounding cumulus-corona cell mass, facilitating the evaluation of oocyte quality and the injection of sperm. Enzyme-treated cumulus-oocyte complexes pass through a series of jagged-surface constriction microchannels of optimized geometries. The jagged inner wall of constriction channels facilitates stripping off of the cumulus-corona cell mass. Oocytes that were denuded by the device showed comparable fertilization and developmental competence compared with mechanical pipetting. The device developed in this study achieves the automation of a manual process for oocyte denudation in a continuous flow, as well as improving standardization and ease-of-use. Our denudation-on-a-chip approach requires inexpensive and simple equipment, which represents one step forward towards improving the accessibility and affordability of assisted reproductive therapy.
机译:可以使用辅助生殖技术(ACSI)等辅助生殖技术(ACSI)进行人类不孕症。但目前的艺术技术遭受了技术熟练人员的多个繁琐的过程。 Microfluidics Technologies提供独特的机会,可以简化艺术程序,减少对配子和胚胎上的应力,并最大限度地减少操作员与操作员的可变性。然而,没有自动化和连续的处理系统,可以减少对训练有素的胚胎素学家的依赖性,以获得来自患者的ICSi-ready卵母细胞。在这项研究中,使用小鼠模型,我们开发了一种微流体装置,以剥夺周围的巨云 - 电晕细胞质量的卵母细胞,促进评估卵母细胞质量和注射精子。酶处理的积分卵母细胞复合物通过优化几何形状的一系列锯齿状表面收缩微通道。收缩通道的锯齿状内壁有助于剥离积分电晕细胞质量。通过该装置剥离的卵母细胞与机械液体相比,施肥和发育能力相当。本研究开发的设备实现了在连续流动中进行手动剥落的手动过程的自动化,以及改善标准化和易用性。我们剥蚀的芯片方法需要廉价且简单的设备,这代表了提高辅助生殖疗法的可访问性和可负担性的一步。

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