Wong Frederick Ck, Kim Christina E, Garcia-Alonso Luz, Vento-Tormo Roser
Wellcome Sanger Institute, Cambridge, UK; Centre for Trophoblast Research, University of Cambridge, Cambridge, UK.
Wellcome Sanger Institute, Cambridge, UK.
Curr Opin Genet Dev. 2025 Jun;92:102341. doi: 10.1016/j.gde.2025.102341. Epub 2025 Mar 27.
Approximately every month, the human endometrium undergoes a cycle of proliferation, differentiation, and, in the absence of pregnancy, shedding and repair. Each cycle relies on intricate interorgan coordination of hormonal secretions. Endometrial dysfunction causes significant health complications, including abnormal menstrual bleeding and endometriosis. However, effective diagnosis and treatments are hampered by understudied aetiology. Recent single-cell profiling has disentangled the diverse and dynamic nature of the endometrium, revealing regulatory roles of WNT, NOTCH, and TGFβ signalling. These insights have informed mechanistic studies enabled by advanced in vitro models that capture endometrial cellular heterogeneity and structure. In this review, we outline key single-cell transcriptomics atlases and models that provided new avenues for studying endometrial biology, discuss their limitations, and propose future directions.
大约每个月,人类子宫内膜都会经历一个增殖、分化的周期,在未怀孕的情况下,还会经历脱落和修复。每个周期都依赖于激素分泌的复杂器官间协调。子宫内膜功能障碍会导致严重的健康并发症,包括异常子宫出血和子宫内膜异位症。然而,病因研究不足阻碍了有效的诊断和治疗。最近的单细胞分析揭示了子宫内膜多样且动态的本质,揭示了WNT、NOTCH和TGFβ信号通路的调节作用。这些见解为通过先进的体外模型进行的机制研究提供了依据,这些模型能够捕捉子宫内膜细胞的异质性和结构。在这篇综述中,我们概述了关键的单细胞转录组图谱和模型,它们为研究子宫内膜生物学提供了新途径,讨论了它们的局限性,并提出了未来的方向。