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Programmed Cell Death-1 and Its Ligands as Targets for Therapy of Multiple Myeloma Patients
Agnieszka Karczmarczyk1, Maciej Korpysz2, Sylwia Bilska3
1Department of Experimental Hematooncology, Medical University of Lublin, Lublin, Poland.
Purpose:
Among hematological malignancies, the expression profile of programmed cell death-1 (PD-1) and its ligands in multiple myeloma (MM) is still debated by numerous research groups. In current study, we characterized the expression of PD-1 and its ligands both on RNA and protein levels in MM patients. We have also attempted to analyze whether daratumumab therapy might overcome CD38-mediated immunosuppression that inhibits in particular CD8+ T-cell function.
Patients And Methods:
This study included 149 newly diagnosed MM patients and 15 relapsed/refractory MM patients before and after daratumumab treatment. The mRNA levels of PDCD1, PDCD1LG1, PDCD1LG2 and their splicing variants was assessed by quantitative reverse transcriptase-polymerase chain reaction (qRT-PCR). Flow cytometry was used to characterize the surface expression of PD-1 and its ligands on plasma cells, B and T cells. The surface expression of PD-1 on T cells was assessed by flow cytometry before and after daratumumab treatment.
Results:
The mRNA expression of PDCD1LG1, PDCD1LG2 and their splicing variants were higher in plasma cells as compared to bone marrow mononuclear cells (BMMCs). Our results show that the percentage of plasma cells expressing PD-L1 was significantly higher than plasma cells expressing PD-L2 (p<0.0001) in bone marrow (BM) of MM patients. There was no significant difference between the percentage of plasma cells expressing PD-1 and B cells expressing PD-1 in BM of MM patients (11.19% vs 8.91%). We also found that the percentage of CD8+PD-1+ T cells was significantly higher than CD4+PD-1+T cells in BM (p<0.0001) of MM patients. Here, we observed no change in PD-1 expression on CD4+ and CD8+ T cells after the daratumumab treatment.
Conclusion:
The PD-1 and its ligands might represent an interesting target for MM immunotherapy, as one would target both malignant plasma cells as well as the immune cells that play a key role in tumor escape mechanisms.
Insights
Programmed cell death-1 (PD-1) and its ligands are expressed in multiple myeloma (MM) plasma cells. Daratumumab therapy did not alter PD-1 expression on T cells, suggesting PD-1/ligands as potential immunotherapy targets in MM.
Area of Science:
- Immunology
- Oncology
- Molecular Biology
Background:
- The expression of programmed cell death-1 (PD-1) and its ligands in multiple myeloma (MM) remains a subject of debate.
- Understanding these immune checkpoint molecules is crucial for developing novel MM immunotherapies.
Purpose of the Study:
- To characterize the RNA and protein expression of PD-1 and its ligands in MM patients.
- To investigate if daratumumab therapy can overcome CD38-mediated immunosuppression affecting CD8+ T-cell function.
Main Methods:
- Quantitative reverse transcriptase-polymerase chain reaction (qRT-PCR) to assess mRNA levels of PDCD1, PDCD1LG1, PDCD1LG2, and splicing variants.
- Flow cytometry to analyze surface expression of PD-1 and its ligands on plasma cells, B cells, and T cells.
- Assessment of PD-1 expression on T cells before and after daratumumab treatment.
Main Results:
- Higher mRNA expression of PDCD1LG1 and PDCD1LG2 in MM plasma cells compared to bone marrow mononuclear cells.
- Significantly higher percentage of plasma cells expressing PD-L1 than PD-L2 in MM patients.
- Elevated CD8+PD-1+ T cells compared to CD4+PD-1+ T cells in MM bone marrow.
- No significant change in PD-1 expression on T cells post-daratumumab treatment.
Conclusions:
- PD-1 and its ligands are potential targets for MM immunotherapy.
- Targeting PD-1/ligands could simultaneously address malignant plasma cells and immune cells involved in tumor escape.
- Daratumumab therapy does not appear to modulate PD-1 expression on T cells in MM.
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