Department of Surgery, Thomas E. Starzl Transplantation Institute, University of Pittsburgh, Pittsburgh, Pennsylvania, USA.
Department of Immunology, University of Pittsburgh, Pittsburgh, Pennsylvania, USA.
Immunol Rev. 2022 Jul;308(1):105-122. doi: 10.1111/imr.13074. Epub 2022 Feb 23.
The mechanisms underlying maternal tolerance of the semi- or fully-allogeneic fetus are intensely investigated. Across gestation, feto-placental antigens interact with the maternal immune system locally within the trophoblast-decidual interface and distantly through shed cells and soluble molecules that interact with maternal secondary lymphoid tissues. The discovery of extracellular vesicles (EVs) as local or systemic carriers of antigens and immune-regulatory molecules has added a new dimension to our understanding of immune modulation prior to implantation, during trophoblast invasion, and throughout the course of pregnancy. New data on immune-regulatory molecules, located on EVs or within their cargo, suggest a role for EVs in negotiating immune tolerance during gestation. Lessons from the field of transplant immunology also shed light on possible interactions between feto-placentally derived EVs and maternal lymphoid tissues. These insights illuminate a potential role for EVs in major obstetrical disorders. This review provides updated information on intensely studied, pregnancy-related EVs, their cargo molecules, and patterns of fetal-placental-maternal trafficking, highlighting potential immune pathways that might underlie immune suppression or activation in gestational health and disease. Our summary also underscores the likely need to broaden the definition of the maternal-fetal interface to systemic maternal immune tissues that might interact with circulating EVs.
母体对同种异体或半同种胎儿的耐受机制正在深入研究。在妊娠期间,胎盘中的抗原与母体免疫系统在胎盘-蜕膜界面局部和通过脱落细胞和可溶性分子与母体次级淋巴组织远距离相互作用。细胞外囊泡(EVs)作为抗原和免疫调节分子的局部或全身载体的发现,为我们在植入前、滋养细胞侵袭期间以及整个妊娠过程中对免疫调节的理解增添了新的维度。位于 EV 上或其货物内的免疫调节分子的新数据表明,EV 在妊娠期间协商免疫耐受中发挥作用。移植免疫学领域的经验教训也揭示了胎-胎盘来源的 EVs 与母体淋巴组织之间可能存在相互作用。这些见解阐明了 EV 在主要产科疾病中的潜在作用。本综述提供了有关强烈研究的、与妊娠相关的 EVs、其货物分子以及胎儿-胎盘-母体运输模式的最新信息,强调了可能潜在的免疫途径,这些途径可能是妊娠健康和疾病中免疫抑制或激活的基础。我们的总结还强调了可能需要将母体-胎儿界面的定义扩展到可能与循环 EVs 相互作用的全身母体免疫组织。