Trained Memory of Uterine Macrophages Improves Subsequent Pregnancy Outcomes

  • Adv Sci (Weinh). 2026 Jun;13(31):e74889. doi: 10.1002/advs.74889.
Jing Wang  1 Ning Lu  1 Xin-Xiu Lin  1 Xu-Hui Fang  1 Yi-Hui Li  1 Qing-Peng Luo  1 Yu-Ting Peng  1 Gil Mor  1  2 Ai-Hua Liao  1
Affiliations
  • 1. Institute of Reproductive Health, Center for Reproductive Medicine, Tongji Medical College, Huazhong University of Science and Technology, Wuhan, P.R. China.
  • 2. C.S. Mott Center for Human Growth and Development, Wayne State University School of Medicine, Detroit, Michigan, USA.
Abstract

A previously successful pregnancy promotes the fitness of subsequent pregnancies, of which the pregnancy-induced memory is ascribed exclusively to adaptive lymphocytes. However, whether macrophages at maternal-fetal interface acquire pregnancy-specific immune memory remains unclear. Using human decidual samples and complementary mouse models, we identify human leukocyte immunoglobulin-like receptor subfamily B3+ (LILRB3+) and murine paired immunoglobulin-like receptor B+ (PIR-B+) macrophages as a uterine memory subset, which expands progressively with gravidity and gestational age, and exhibits paternal specific immune memory. In both species, these cells exhibited hallmarks of pregnancy-induced trained tolerance, including elevated IL-10, TGF-β, and CD206, together with reduced CD80/CD86 expression and suppression of pro-inflammatory cytokines. Mechanistically, PIR-B-SHP signaling drives macrophage metabolic reprogramming to Oxidative Phosphorylation/fatty acid oxidation for the formation of memory. Moreover, adoptive transfer of PIR-B+ uterine macrophages into abortion-prone mouse models significantly improves pregnancy outcomes, highlighting their therapeutic potential. Together, our findings uncover a previously unrecognized form of decidual macrophage trained memory in an antigen-specific manner, which opens avenues for therapeutic strategies aimed at preventing or reducing recurrent pregnancy loss.

Keywords
decidual macrophages; innate immune memory; leukocyte immunoglobulin‐like receptor subfamily B; maternal‐fetal interface; paired immunoglobulin‐like receptor B.
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