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Published on: June 27, 2025
Various checkpoint molecules, and tumor-infiltrating lymphocytes in common pediatric solid tumors: Possibilities for
Kazuhiro Mochizuki1, Satoshi Kawana2, Shoki Yamada2
1a Department of Pediatric Oncology , Fukushima Medical University Hospital , Fukushima , Japan.
Abstract:
Long-term survival rates for pediatric patients with cancer have significantly improved, but novel approaches are desired for those with refractory/relapsed solid tumors. Recently, programed cell death-1/programed cell death-ligand-1 blockade has emerged as an effective option for many intractable cancers. However, not all patients show objective response to such therapy. On the other hand, several other checkpoint pathways, including Herpes virus entry mediator (HVEM)/B- and T-lymphocyte attenuator (BTLA), galectin-9 (GAL9)/T-cell immunoglobulin and mucin domain-3 (TIM3), and major histocompatibility complex class II (MHC-II)/lymphocyte activation gene-3 (LAG3), also regulate immune responses in the tumor microenvironment and may be alternative targets for novel immune therapies. In this study, we examined 65 common pediatric solid tumors and characterized the expression of Herpes virus entry mediator, GAL9, and MHC-II on tumor cells and their corresponding receptors B- and T-lymphocyte attenuator, TIM3, and LAG3, respectively, on tumor-infiltrating lymphocytes (TILs) with immunohistochemistry. Whereas the expression of GAL9 and MHC-II was limited, 73% of rhabdomyosarcomas and 100% of osteosarcomas expressed moderate to high levels of Herpes virus entry mediator on the tumor. TILs were detected in all tumor samples except one osteosarcoma. Interestingly, 45% of rhabdomyosarcomas, and 45% of osteosarcomas expressed moderate to high levels of both Herpes virus entry mediator on the tumor cells and B- and T-lymphocyte attenuator on the TILs. Results showed that a subset of pediatric solid tumors expressed tumor-associated checkpoint molecules, and TILs expressed corresponding receptors for these checkpoint molecules. Thus, immunogenic environments may be created, and checkpoint blockade may induce favorable immune responses.
Insights
Novel immune checkpoint targets like Herpes virus entry mediator (HVEM) show promise for pediatric solid tumors. Targeting HVEM and its receptor on tumor-infiltrating lymphocytes may improve immunotherapy responses in refractory cancers.
Area of Science:
- Immunology
- Pediatric Oncology
- Cancer Research
Background:
- Pediatric cancer survival has improved, yet refractory/relapsed solid tumors require new treatments.
- Programmed cell death-1/ligand-1 (PD-1/PD-L1) blockade is effective but not universally successful.
- Alternative immune checkpoint pathways (HVEM/BTLA, GAL9/TIM3, MHC-II/LAG3) offer potential therapeutic targets.
Purpose of the Study:
- To investigate the expression of immune checkpoint molecules HVEM, GAL9, and MHC-II on pediatric solid tumors.
- To assess the expression of their corresponding receptors BTLA, TIM3, and LAG3 on tumor-infiltrating lymphocytes (TILs).
- To explore the potential of these checkpoints as targets for novel immunotherapies in pediatric cancers.
Main Methods:
- Immunohistochemistry was used to analyze 65 common pediatric solid tumors.
- Expression levels of HVEM, GAL9, and MHC-II were quantified on tumor cells.
- Expression levels of BTLA, TIM3, and LAG3 were quantified on TILs within the tumor microenvironment.
Main Results:
- GAL9 and MHC-II expression on tumors was limited.
- Herpes virus entry mediator (HVEM) was highly expressed on 73% of rhabdomyosarcomas and 100% of osteosarcomas.
- Moderate to high co-expression of HVEM on tumor cells and B- and T-lymphocyte attenuator (BTLA) on TILs was observed in 45% of rhabdomyosarcomas and osteosarcomas.
Conclusions:
- A subset of pediatric solid tumors express tumor-associated checkpoint molecules like HVEM.
- TILs within these tumors express corresponding checkpoint receptors such as BTLA.
- Targeting these alternative immune checkpoints may create immunogenic environments and induce favorable responses in pediatric cancers.
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