Tim-3 decidual Mφs induced Th2 and Treg bias in decidual CD4T cells and promoted pregnancy maintenance via CD132.

Cell Death Dis

Laboratory for Reproductive Immunology, Key Laboratory of Reproduction Regulation of NPFPC, SIPPR, IRD, Shanghai Key Laboratory of Female Reproductive Endocrine Related Diseases, Hospital of Obstetrics and Gynecology, Fudan University Shanghai Medical College, Shanghai, PR China.

Published: May 2022

AI Article Synopsis

  • Tim-3 is crucial for regulating the function of macrophages during pregnancy and is linked to miscarriage, with higher levels found in decidual macrophages responding to trophoblasts.
  • The study reveals that alterations in Tim-3 levels affect cytokine profiles in miscarriage, and that Tim-3+ macrophages can help prevent embryo loss when transferred into models lacking these cells.
  • The research suggests Tim-3 could be a biomarker for miscarriage and highlights the need for caution regarding immune therapies that disrupt maternal-fetal tolerance, while also pointing to potential treatments involving IL-4 for preventing pregnancy loss induced by immune checkpoint inhibition.

Article Abstract

T-cell immunoglobulin mucin-3 (Tim-3) plays roles in the functional regulation of both adaptive and innate immune cells and is greatly involved in many diseases. However, the precise roles of Tim-3 on macrophages (Mφs) in pregnancy remain unstated. In the current study, we found the higher frequency of Tim-3 decidual Mφs (dMφs) in response to trophoblasts. The reduced abundance of Tim-3 on Mφs was accompanied by disordered anti- and pro-inflammatory cytokine profiles in miscarriage. Adoptive transfer of Tim-3Mφs, but not Tim-3Mφs, relieved murine embryo absorption induced by Mφ depletion. Our flow cytometry results and the extensive microarray analysis confirmed that Tim-3 and Tim-3dMφs were neither precisely pro-inflammatory (M1) nor anti-inflammatory (M2) Mφs. However, with higher CD132 expression, Tim-3dMφs subset induced Th2 and Treg bias in decidual CD4T cells and promoted pregnancy maintenance. Blockade of Tim-3 or CD132 pathways leaded to the dysfunction of maternal-fetal tolerance and increased fetal loss. These findings underscored the important roles of Tim-3 in regulating dMφ function and maintaining normal pregnancy, and suggested that Tim-3 on Mφs is a potential biomarker for diagnosis of miscarriage. Our study also emphasized the importance of careful consideration of reproductive safety when choosing immune checkpoint blockade therapies in real world clinical care. Though IL-4 treated Tim-3Mφs could rescue the fetal resorption induced by Mφ depletion, whether IL-4 represent novel therapeutic strategy to prevent pregnancy loss induced by checkpoint inhibition still needs further research.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9098864PMC
http://dx.doi.org/10.1038/s41419-022-04899-2DOI Listing

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