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基于介电电泳(EWOD)芯片的哺乳动物胚胎数字微流控动态培养

Digital Microfluidic Dynamic Culture of Mammalian Embryos on an Electrowetting on Dielectric (EWOD) Chip.

作者信息

Huang Hong-Yuan, Shen Hsien-Hua, Tien Chang-Hung, Li Chin-Jung, Fan Shih-Kang, Liu Cheng-Hsien, Hsu Wen-Syang, Yao Da-Jeng

机构信息

Department of Obstetrics and Gynecology, Linkou Medical Center, Chang Gung Memorial Hospital, Taoyuan, Taiwan; Department of Obstetrics and Gynecology, Chang Gung University and College of Medicine, Taoyuan, Taiwan.

Institute of Nanoengineering and Microsystem, National Tsing Hua University, Hsinchu, Taiwan.

出版信息

PLoS One. 2015 May 1;10(5):e0124196. doi: 10.1371/journal.pone.0124196. eCollection 2015.

Abstract

Current human fertilization in vitro (IVF) bypasses the female oviduct and manually inseminates, fertilizes and cultivates embryos in a static microdrop containing appropriate chemical compounds. A microfluidic microchannel system for IVF is considered to provide an improved in-vivo-mimicking environment to enhance the development in a culture system for an embryo before implantation. We demonstrate a novel digitalized microfluidic device powered with electrowetting on a dielectric (EWOD) to culture an embryo in vitro in a single droplet in a microfluidic environment to mimic the environment in vivo for development of the embryo and to culture the embryos with good development and live births. Our results show that the dynamic culture powered with EWOD can manipulate a single droplet containing one mouse embryo and culture to the blastocyst stage. The rate of embryo cleavage to a hatching blastocyst with a dynamic culture is significantly greater than that with a traditional static culture (p<0.05). The EWOD chip enhances the culture of mouse embryos in a dynamic environment. To test the reproductive outcome of the embryos collected from an EWOD chip as a culture system, we transferred embryos to pseudo-pregnant female mice and produced live births. These results demonstrate that an EWOD-based microfluidic device is capable of culturing mammalian embryos in a microfluidic biological manner, presaging future clinical application.

摘要

目前的人类体外受精(IVF)绕过了女性输卵管,在含有适当化合物的静态微滴中人工授精、使胚胎受精并进行培养。用于IVF的微流控微通道系统被认为可提供一种改进的模拟体内环境,以促进胚胎在植入前培养系统中的发育。我们展示了一种基于介电电润湿(EWOD)驱动的新型数字化微流控装置,用于在微流控环境中的单个液滴内体外培养胚胎,以模拟胚胎发育的体内环境,并培养出发育良好且能实现活体分娩的胚胎。我们的结果表明,由EWOD驱动的动态培养能够操控含有单个小鼠胚胎的液滴并培养至囊胚阶段。动态培养条件下胚胎发育至孵化囊胚的分裂率显著高于传统静态培养(p<0.05)。EWOD芯片增强了小鼠胚胎在动态环境中的培养。为了测试从作为培养系统的EWOD芯片收集的胚胎的生殖结果,我们将胚胎移植到假孕雌性小鼠体内并实现了活体分娩。这些结果表明,基于EWOD的微流控装置能够以微流控生物学方式培养哺乳动物胚胎,预示着未来的临床应用前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/eb13/4416819/528fd0ccff45/pone.0124196.g002.jpg

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