Prencipe Giuseppe, Cerveró-Varona Adrián, Perugini Monia, Sulcanese Ludovica, Iannetta Annamaria, Haidar-Montes Arlette Alina, Stöckl Johannes, Canciello Angelo, Berardinelli Paolo, Russo Valentina, Barboni Barbara
Unit of Basic and Applied Sciences, Department of Biosciences and Agro-Food and Environmental Technologies, University of Teramo, 64100 Teramo, Italy.
Department of Bioscience and Agro-Food and Environmental Technology, University of Teramo, Teramo, Italy.
iScience. 2024 Jul 14;27(8):110508. doi: 10.1016/j.isci.2024.110508. eCollection 2024 Aug 16.
The paracrine crosstalk between amniotic-derived membranes (AMs)/epithelial cells (AECs) and immune cells is pivotal in tissue healing following inflammation. Despite evidence collected to date, gaps in understanding the underlying molecular mechanisms have hindered clinical applications. The present study represents a significant step forward demonstrating that amphiregulin (AREG) orchestrates the native immunomodulatory functions of amniotic derivatives via the COX-2/PGE/EP4 axis. The results highlight the immunosuppressive efficacy of PGE-dependent AREG release, dampening PBMCs' activation, and NFAT pathway in Jurkat reporter cells via TGF-β signaling. Moreover, AREG emerges as a key protein mediator by attenuating acute inflammatory response in zebrafish larvae. Notably, the interplay of diverse COX-2/PGE pathway activators enables AM/AEC to adapt rapidly to external stimuli (LPS and/or stretching) through a responsive positive feedback loop on the AREG/EGFR axis. These findings offer valuable insights for developing innovative cell-free therapies leveraging the potential of amniotic derivatives in immune-mediated diseases and regenerative medicine.
羊膜来源的膜(AMs)/上皮细胞(AECs)与免疫细胞之间的旁分泌串扰在炎症后的组织愈合中起关键作用。尽管迄今已收集了相关证据,但对潜在分子机制的理解存在差距,这阻碍了临床应用。本研究向前迈出了重要一步,证明双调蛋白(AREG)通过COX-2/PGE/EP4轴协调羊膜衍生物的天然免疫调节功能。结果突出了PGE依赖的AREG释放的免疫抑制功效,通过TGF-β信号传导抑制Jurkat报告细胞中PBMC的激活和NFAT途径。此外,AREG通过减弱斑马鱼幼虫的急性炎症反应而成为关键的蛋白质介质。值得注意的是,多种COX-2/PGE途径激活剂的相互作用使AM/AEC能够通过AREG/EGFR轴上的反应性正反馈回路快速适应外部刺激(LPS和/或拉伸)。这些发现为开发利用羊膜衍生物在免疫介导疾病和再生医学中的潜力的创新无细胞疗法提供了有价值的见解。