Lermant Agathe, Rabussier Gwenaëlle, Lanz Henriëtte L, Davidson Lindsay, Porter Iain M, Murdoch Colin E
Systems Medicine, School of Medicine, University of Dundee, Dundee DD1 9SY, UK.
MIMETAS, Oegstgeest 2342, the Netherlands.
iScience. 2023 Jul 13;26(7):107240. doi: 10.1016/j.isci.2023.107240. eCollection 2023 Jul 21.
Although recently developed placenta-on-chip systems opened promising perspectives for placental barrier modeling, they still lack physiologically relevant trophoblasts and are poorly amenable to high-throughput studies. We aimed to implement human-induced pluripotent stem cells (hiPSC)-derived trophoblasts into a multi-well microfluidic device to develop a physiologically relevant and scalable placental barrier model. When cultured in a perfused micro-channel against a collagen-based matrix, hiPSC-derived trophoblasts self-arranged into a 3D structure showing invasive behavior, fusogenic and endocrine activities, structural integrity, and expressing placental transporters. RNA-seq analysis revealed that the microfluidic 3D environment boosted expression of genes related to early placental structural development, mainly involved in mechanosensing and cell surface receptor signaling. These results demonstrated the feasibility of generating a differentiated primitive syncytium from hiPSC in a microfluidic platform. Besides expanding hiPSC-derived trophoblast scope of applications, this study constitutes an important resource to improve placental barrier models and boost research and therapeutics evaluation in pregnancy.
尽管最近开发的芯片胎盘系统为胎盘屏障建模开辟了前景广阔的视角,但它们仍然缺乏具有生理相关性的滋养层细胞,并且难以进行高通量研究。我们旨在将人诱导多能干细胞(hiPSC)衍生的滋养层细胞应用于多孔微流控装置,以开发一种具有生理相关性且可扩展的胎盘屏障模型。当在灌注微通道中与基于胶原蛋白的基质相对培养时,hiPSC衍生的滋养层细胞会自行排列成三维结构,表现出侵袭行为、融合和内分泌活性、结构完整性,并表达胎盘转运蛋白。RNA测序分析表明,微流控三维环境促进了与早期胎盘结构发育相关基因的表达,这些基因主要参与机械传感和细胞表面受体信号传导。这些结果证明了在微流控平台上从hiPSC生成分化的原始合体滋养层的可行性。除了扩大hiPSC衍生的滋养层细胞的应用范围外,本研究还为改进胎盘屏障模型以及推动妊娠研究和治疗评估提供了重要资源。