首页> 外文会议>ASME/JSME/KSME Joint Fluids Engineering Conference >RECAPITULATION OF TROPHOBLAST INVASION DURING PREGNANCY IN A PHYSIOLOGICAL HYPOXIA INDUCED MICROFLUIDIC DEVICE
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RECAPITULATION OF TROPHOBLAST INVASION DURING PREGNANCY IN A PHYSIOLOGICAL HYPOXIA INDUCED MICROFLUIDIC DEVICE

机译:生理性缺氧诱导的微流控设备在妊娠期间滋养细胞入侵的重新定型

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Trophoblast invasion and remodeling of uterine spiral artery is closely related to the healthy pregnancy and normal development of fetus. However, if the trophoblast invasion is inhibited and the spiral artery remodeling process is not sufficiently done, this promotes grave pregnancy diseases such as pre-eclampsia. In this research we focused on one of the major factors that affect trophoblast invasion, oxygen concentration. We designed a microfluidic device fabricated with Polydimethylsiloxane (PDMS) which can mimic the microenvironment of the placenta and control physiological oxygen concentration. Human umbilical vessel cells (HUVEC) and trophoblasts (HTR-8) were cultured inside the microfluidic device to recapitulate the placental microenvironment. HUVECs and trophoblasts were co-cultured under normoxic and hypoxic condition to recapitulated trophoblast invasion. We anticipate this device to be utilized as a research model for improve our understandings on mechanisms of trophoblast invasion and a possible platform for developing treatment methods and medicines for pregnancy disorders.
机译:滋养细胞侵袭和重建子宫螺旋动脉与健康怀孕和胎儿的正常发育密切相关。但是,如果抑制了滋养细胞的侵袭,而螺旋动脉的重塑过程却做得不够,则会导致严重的妊娠疾病,例如先兆子痫。在这项研究中,我们集中于影响滋养层细胞入侵的主要因素之一,即氧气浓度。我们设计了一种由聚二甲基硅氧烷(PDMS)制造的微流控设备,该设备可以模拟胎盘的微环境并控制生理氧浓度。在微流体装置内部培养人脐带血管细胞(HUVEC)和滋养细胞(HTR-8),以概括胎盘微环境。 HUVEC和滋养细胞在常氧和低氧条件下共培养,以概括滋养细胞的侵袭。我们预计该设备将用作研究模型,以增进我们对滋养层细胞侵袭机制的理解,并为开发治疗妊娠疾病的方法和药物提供可能的平台。

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