University of Southampton, Faculty of Medicine, UK.
Placenta. 2023 Sep 26;141:78-83. doi: 10.1016/j.placenta.2023.07.015. Epub 2023 Jul 20.
Many structures necessary for placental function can only be visualised at the ultrastructural scale. Recent technological advances have made Volume electron microscopy (volume EM) approaches much more accessible. Volume EM allows the ultrastructure of tissues, cells and organelles to be visualised in 3D. It also allows the 3D spatial relationships between these structures to be determined. This review will highlight the potential for volume EM to advance our understanding of placental ultrastructure. It will focus on the human term placenta highlighting key findings spanning the placental barrier from trans-syncytial nanopores in the syncytiotrophoblast to tunnelling nanotubes in the fetal capillary endothelium. Volume EM is advancing our understanding of placental ultrastructure, but to fully exploit its potential, it will be necessary to use it as part of multimodal and correlative workflows. The complementary strengths of these different approaches can complement volume EM and reveal the biological significance of its novel observations. The use of volume EM also highlighted how ultrastructural features might underpin pregnancy pathologies and demonstrates the need for more research in this underrepresented area.
许多对胎盘功能至关重要的结构只能在超微结构尺度上观察到。最近的技术进步使得体式电子显微镜(volume EM)方法更容易获得。Volume EM 可以使组织、细胞和细胞器的超微结构在 3D 中可视化。它还可以确定这些结构之间的 3D 空间关系。这篇综述将强调 volume EM 有潜力增进我们对胎盘超微结构的理解。它将重点关注人类足月胎盘,突出跨越胎盘屏障的关键发现,从合胞滋养层中的跨合体纳米孔到胎儿毛细血管内皮中的隧道纳米管。Volume EM 正在增进我们对胎盘超微结构的理解,但为了充分利用其潜力,有必要将其作为多模态和相关工作流程的一部分来使用。这些不同方法的互补优势可以补充 volume EM,并揭示其新观察结果的生物学意义。使用 volume EM 还强调了超微结构特征如何影响妊娠病理,并表明需要在这个代表性不足的领域进行更多研究。