Zheng Kunhua, Xiao Longfei, Yuan Naihan, Sheng Xihui, Qi Xiaolong, Wang Yingqiu, Chen Chang, Guo Kaijun, Yang Lin, Liu Bingying, Wang Xiangguo
Animal Science and Technology College, Beijing University of Agriculture, Beijing 102206, China.
Animal Epidemic prevention and Quarantine center, Huimin District, Inner Mongolia Autonomous Region 010030, China.
J Reprod Dev. 2025 Feb 5;71(1):41-48. doi: 10.1262/jrd.2024-081. Epub 2024 Dec 12.
Insulin-like growth factor 2 (IGF2) is essential for cell growth and differentiation and functions through the IGF2 receptor (IGF2R) to regulate embryonic and placental development. Exosomes that are synthesized and released from cells and play important roles in embryogenesis and placental development rely on the IGF2R for sorting and transport. However, the role of the imprinted Igf2-Igr2r axis and exosomes in the co-regulation of early placental development remains unknown. Cotyledon villi were collected from bovine placentas at different gestational ages, and the localization and expression of IGF2, IGF2R, and exosomal marker proteins were detected. Furthermore, the expression of exosomal marker factors was detected after the expression of IGF2R or IGF2 was inhibited through RNA interference or the addition of inhibitors, respectively. Our results demonstrated that IGF2, IGF2R, and the exosomal markers CD63, CD9, TSG101, and Rab11 are mainly located on the cell membrane of mononuclear trophoblast cells and binuclear trophoblast cells, which make up the cotyledon villi of the bovine placenta. The expressions of IGF2, IGF2R, and the exosomal marker proteins CD63, CD9, TSG101, and Rab11 showed a significant upward trend with increased gestation duration. Additionally, both Igf2r-knockdown and suppressing the expression of IGF2 with chromeceptin (IGF2 inhibitor) led to the downregulation of exosomal marker proteins in both bovine placental trophoblast cells (BTCs) and BTC-derived exosomes. Our study confirmed that the imprinted Igf2-Igf2r axis participates in the early development of cotyledon villi in the bovine placenta by manipulating exosome biogenesis, providing evidence for improving disorders during placental development.
胰岛素样生长因子2(IGF2)对细胞生长和分化至关重要,并通过胰岛素样生长因子2受体(IGF2R)发挥作用,以调节胚胎和胎盘发育。细胞合成并释放的外泌体在胚胎发生和胎盘发育中起重要作用,其分选和运输依赖于IGF2R。然而,印记的Igf2-Igr2r轴和外泌体在早期胎盘发育的共同调节中的作用仍不清楚。收集不同妊娠年龄的牛胎盘子叶绒毛,检测IGF2、IGF2R和外泌体标记蛋白的定位和表达。此外,分别通过RNA干扰或添加抑制剂抑制IGF2R或IGF2的表达后,检测外泌体标记因子的表达。我们的结果表明,IGF2、IGF2R以及外泌体标记物CD63、CD9、TSG101和Rab11主要位于构成牛胎盘子叶绒毛的单核滋养层细胞和双核滋养层细胞的细胞膜上。随着妊娠时间的增加,IGF2、IGF2R以及外泌体标记蛋白CD63、CD9、TSG101和Rab11的表达呈显著上升趋势。此外,Igf2r基因敲低以及用铬抑素(IGF2抑制剂)抑制IGF2的表达均导致牛胎盘滋养层细胞(BTCs)和BTC来源的外泌体中外泌体标记蛋白的下调。我们的研究证实,印记的Igf2-Igf2r轴通过操纵外泌体生物发生参与牛胎盘子叶绒毛的早期发育,为改善胎盘发育过程中的紊乱提供了证据。