ArticleCell death & disease2024
Myeloid-derived suppressor cells-induced exhaustion of CD8 + T-cell participates in rejection after liver transplantation.
Article in Cell death & disease, 2024. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 15 papers.
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Who cites it
15 citing papers in PubMed.
- The multifaceted landscape of T cell exhaustion in organ transplantation: From molecular mechanisms (epigenetics, transcription, metabolism) to induction strategies.Genes & diseases · 2026Review
- Myeloid-Derived Suppressor Cells in Sepsis: Pathophysiology, Duality, and Therapeutic Frontiers.Shock (Augusta, Ga.) · 2026Review
- LDLRJournal of clinical and translational hepatology · 2026Article
- Decoding the tumor-aging axis: from bench to clinical.Frontiers in immunology · 2026Review
- The immunosuppressive tumor microenvironment in post-transplant lymphoproliferative disorder: pathogenesis and novel therapeutic frontiers.Frontiers in immunology · 2026Review
- Regulating the regulators via targeting CD38 in the tumor microenvironment.Frontiers in immunology · 2026Review
- Single-cell and spatial transcriptomics reveal transplant-associated T cells and myeloid cells in human liver transplantation.Frontiers in immunology · 2026Article
- Ultrasound medicine in the era of precision theranostics: Mechanisms, molecular strategies, and clinical translation.Iranian journal of basic medical sciences · 2026Review
- Single-cell analysis indicating CCR8 modulates CD8Scientific reports · 2025Article
- Optimizing the mouse orthotopic liver transplantation model: Learning curve, technical enhancements, and keys to success.Liver transplantation : official publication of the American Association for the Study of Liver Diseases and the International Liver Transplantation Society · 2025Article
- Cooperative role of MDSCs and Tregs in alum-induced alloimmune tolerance in corneal transplantation.Scientific reports · 2025Article
- Oxidized Low-Density Lipoprotein as a Potential Target for Enhancing Immune Checkpoint Inhibitor Therapy in Microsatellite-Stable Colorectal Cancer.Antioxidants (Basel, Switzerland) · 2025Review
- Review
- Multi-omics spatial characteristics of CD8Frontiers in immunology · 2025Article
- The effects of interleukin-21 in the biology of transplant rejection.Frontiers in immunology · 2025Review
Corrections and comments
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Authors and funding
11 authors.
Funding
No grant is acknowledged in the PubMed record.
Abstract
Liver transplantation (LT) rejection remains the most pervasive problem associated with this procedure, while the mechanism involved is still complicated and undefined. One promising solution may involve the use of myeloid-derived suppressor cells (MDSC). However, the immunological mechanisms underlying the effects of MDSC after LT remain unclear. This study is meant to clarify the role MDSCs play after liver transplantation. In this study, we collected liver tissue and peripheral blood mononuclear cells (PBMC) from LT patients showing varying degrees of rejection, as well as liver and spleen tissue samples from mice LT models. These samples were then analyzed using flow cytometry, immunohistochemistry and multiple immunofluorescence. M-MDSCs and CD8 + T-cells extracted from C57/BL6 mice were enriched and cocultured for in vitro experiments. Results, as obtained in both LT patients and LT mice model, revealed that the proportion and frequency of M-MDSC and PD-1 + T-cells increased significantly under conditions associated with a high degree of LT rejection. Within the LT rejection group, our immunofluorescence results showed that a close spatial contiguity was present between PD-1 + T-cells and M-MDSCs in these liver tissue samples and the proportion of CD84/PD-L1 double-positive M-MDSC was greater than that of G-MDSC. There was a positive correlation between the activity of CD84 and immunosuppressive function of M-MDSCs including PD-L1 expression and reactive oxygen species (ROS) production, as demonstrated in our in vitro model. M-MDSCs treated with CD84 protein were able to induce co-cultured CD8 + T-cells to express high levels of exhaustion markers. We found that CD84 regulated M-MDSC function via expression of PD-L1 through activation of the Akt/Stat3 pathway. These results suggest that the capacity for CD84 to regulate M-MDSC induction of CD8 + T-cell exhaustion may play a key role in LT rejection. Such findings provide important, new insights into the mechanisms of tolerance induction in LT.
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