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用于自动化卵母细胞培养的环烯烃共聚物微流控器件的快速成型。

Rapid Prototyping of a Cyclic Olefin Copolymer Microfluidic Device for Automated Oocyte Culturing.

机构信息

1 Group of Sensors and Biosensors, Chemistry Department, Universitat Autònoma de Barcelona, Bellaterra, Spain.

2 Department of Animal Health and Anatomy, Universitat Autònoma de Barcelona, Bellaterra, Spain.

出版信息

SLAS Technol. 2017 Oct;22(5):507-517. doi: 10.1177/2472555216684625.

Abstract

Assisted reproductive technology (ART) can benefit from the features of microfluidic technologies, such as the automation of time-consuming labor-intensive procedures, the possibility to mimic in vivo environments, and the miniaturization of the required equipment. To date, most of the proposed approaches are based on polydimethylsiloxane (PDMS) as platform substrate material due to its widespread use in academia, despite certain disadvantages, such as the elevated cost of mass production. Herein, we present a rapid fabrication process for a cyclic olefin copolymer (COC) monolithic microfluidic device combining hot embossing-using a low-temperature cofired ceramic (LTCC) master-and micromilling. The microfluidic device was suitable for trapping and maturation of bovine oocytes, which were further studied to determine their ability to be fertilized. Furthermore, another COC microfluidic device was fabricated to store sperm and assess its quality parameters over time. The study herein presented demonstrates a good biocompatibility of the COC when working with gametes, and it exhibits certain advantages, such as the nonabsorption of small molecules, gas impermeability, and low fabrication costs, all at the prototyping and mass production scale, thus taking a step further toward fully automated microfluidic devices in ART.

摘要

辅助生殖技术 (ART) 可以受益于微流控技术的特点,例如自动化耗时且劳动密集的程序、模拟体内环境的可能性以及所需设备的小型化。迄今为止,由于其在学术界的广泛应用,大多数提出的方法都基于聚二甲基硅氧烷 (PDMS) 作为平台衬底材料,尽管存在一些缺点,例如大规模生产的成本升高。在这里,我们提出了一种快速制造环状烯烃共聚物 (COC) 整体式微流控器件的方法,该方法结合了热压印-使用低温共烧陶瓷 (LTCC) 母版-和微铣削。该微流控器件适用于牛卵母细胞的捕获和成熟,进一步研究了它们受精的能力。此外,还制造了另一个 COC 微流控器件来储存精子,并随着时间的推移评估其质量参数。本文研究证明了 COC 在与配子一起工作时具有良好的生物相容性,并且具有某些优势,例如小分子不吸收、不透气体和低制造成本,所有这些都可以在原型制作和大规模生产阶段实现,从而朝着 ART 中的全自动微流控设备迈出了一步。

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