State Key Laboratory of Stem Cell and Reproductive Biology, Institute of Zoology, Chinese Academy of Sciences, Beijing, China.
University of Chinese Academy of Sciences, Beijing, China.
Biol Reprod. 2021 Mar 11;104(3):624-637. doi: 10.1093/biolre/ioaa208.
Uterine spiral artery (SPA) remodeling is a crucial event during pregnancy to provide enough blood supply to maternal-fetal interface and meet the demands of the growing fetus. Along this process, the dynamic change and the fate of spiral artery vascular smooth muscle cells (SPA-VSMCs) have long been debatable. In the present study, we analyzed the cell features of SPA-VSMCs at different stages of vascular remodeling in human early pregnancy, and we demonstrated the progressively morphological change of SPA-VSMCs at un-remodeled (Un-Rem), remodeling, and fully remodeled (Fully-Rem) stages, indicating the extravillous trophoblast (EVT)-independent and EVT-dependent phases of SPA-VSMC dedifferentiation. In vitro experiments in VSMC cell line revealed the efficient roles of decidual stromal cells, decidual natural killer cells (dNK), decidual macrophages, and EVTs in inducing VSMCs dedifferentiation. Importantly, the potential transformation of VSMC toward CD56+ dNKs was displayed by immunofluorescence-DNA in-situ hybridization-proximity ligation and chromatin immunoprecipitation assays for H3K4dime modification in the myosin heavy chain 11 (MYH11) promoter region. The findings clearly illustrate a cascade regulation of the progressive dedifferentiation of SPA-VSMCs by multiple cell types in uterine decidual niche and provide new evidences to reveal the destination of SPA-VSMCs during vascular remodeling.
子宫螺旋动脉(SPA)重塑是妊娠期间的一个关键事件,旨在为母体-胎儿界面提供足够的血液供应,并满足不断成长的胎儿的需求。在此过程中,螺旋动脉血管平滑肌细胞(SPA-VSMC)的动态变化和命运一直存在争议。在本研究中,我们分析了人早孕 SPA-VSMC 在血管重塑不同阶段的细胞特征,并展示了 SPA-VSMC 在未重塑(Un-Rem)、重塑和完全重塑(Fully-Rem)阶段的渐进形态变化,表明 SPA-VSMC 去分化存在绒毛外滋养层(EVT)独立和 EVT 依赖阶段。在血管平滑肌细胞系的体外实验中,揭示了基质细胞、自然杀伤细胞(dNK)、巨噬细胞和 EVT 在外周血单个核细胞(VSMC)去分化中发挥的有效作用。重要的是,免疫荧光-DNA 原位杂交-邻近连接和染色质免疫沉淀分析显示 MYH11 启动子区域 H3K4dime 修饰的 H3K4dime 修饰,VSMC 向 CD56+dNK 的潜在转化。这些发现清楚地说明了在子宫蜕膜龛中多种细胞类型对 SPA-VSMC 渐进性去分化的级联调节,并为揭示血管重塑过程中 SPA-VSMC 的去向提供了新的证据。