Cooley Anne, Madhukaran ShanmugaPriyaa, Stroebele Elizabeth, Colon Caraballo Mariano, Wang Lei, Akgul Yucel, Hon Gary C, Mahendroo Mala
Cecil H. and Ida Green Center for Reproductive Biology Sciences, University of Texas Southwestern Medical Center, Dallas, TX 75390, USA.
Department of Obstetrics and Gynecology, University of Texas Southwestern Medical Center, Dallas, TX 75390, USA.
iScience. 2023 Jan 12;26(2):105953. doi: 10.1016/j.isci.2023.105953. eCollection 2023 Feb 17.
The cervical epithelium undergoes changes in proliferation, differentiation, and function that are critical to ensure fertility and maintain pregnancy. Here, we identify cervical epithelial subtypes in non-pregnant, pregnant, and in labor mice using single-cell transcriptome and spatial analysis. We identify heterogeneous subpopulations of epithelia displaying spatial and temporal specificity. Notably in pregnancy, two goblet cell subtypes are present in the most luminal layers with one goblet population expanding earlier in pregnancy than the other goblet population. The goblet populations express novel protective factors and distinct mucosal networks. Single-cell analysis in a model of cervical epithelial barrier disruption indicates untimely basal cell proliferation precedes the expansion of goblet cells with diminished mucosal integrity. These data demonstrate how the cervical epithelium undergoes continuous remodeling to maintain dynamic states of homeostasis in pregnancy and labor, and provide a framework to understand perturbations in epithelial health that increase the risk of premature birth.
宫颈上皮在增殖、分化和功能方面会发生变化,这些变化对于确保生育能力和维持妊娠至关重要。在此,我们使用单细胞转录组和空间分析方法,鉴定了未怀孕、怀孕和分娩小鼠的宫颈上皮亚型。我们识别出了具有时空特异性的上皮异质子群。值得注意的是,在怀孕期间,最内层存在两种杯状细胞亚型,其中一种杯状细胞群体在孕期比另一种杯状细胞群体更早扩张。这些杯状细胞群体表达新的保护因子和独特的黏膜网络。宫颈上皮屏障破坏模型中的单细胞分析表明,基底细胞过早增殖先于杯状细胞扩张,同时黏膜完整性降低。这些数据证明了宫颈上皮如何进行持续重塑以在妊娠和分娩期间维持动态的内稳态,并提供了一个框架来理解上皮健康的扰动如何增加早产风险。