PD-L1 expression in metastatic neuroblastoma as an additional mechanism for limiting immune surveillance
Alessandra Dondero1, Fabio Pastorino2, Mariella Della Chiesa1
1Dipartimento di Medicina Sperimentale, Università degli Studi di Genova , Italy.
Abstract:
The prognosis of high-risk neuroblastoma (NB) remains poor, although immunotherapies with anti-GD2 antibodies have been reported to provide some benefit. Immunotherapies can be associated with an IFNγ storm that induces in tumor cells the "adaptive immune resistance" characterized by the de-novo expression of Programmed Death Ligands (PD-Ls). Tumor cells can also constitutively express PD-Ls in response to oncogenic signaling. Here, we analyze the constitutive and the inducible surface expression of PD-Ls in NB cells. We show that virtually all HLA class Ipos NB cell lines constitutively express PD-L1, whereas PD-L2 is rarely detected. IFNγ upregulates or induces PD-L1 both in NB cell lines in vitro and in NB engrafted nude/nude mice. Importantly, after IFNγ stimulation PD-L1 can be acquired by NB cell lines, as well as by metastatic neuroblasts isolated from bone marrow aspirates of high-risk NB patients, characterized by different MYCN amplification status. Interestingly, in one patient NB cells were poorly responsive to IFNγ stimulation, pointing out that responsiveness to IFNγ might represent a further element of heterogeneity in metastatic neuroblasts. Finally, we document the presence of lymphocytes expressing the PD-1 receptor in NB-infiltrated bone marrow of patients. PD-1pos cells are mainly represented by αβ T cells, but also include small populations of γδ T cells and NK cells. Moreover, PD-1pos T cells have a higher expression of activation markers. Overall, our data show that a PD-L1-mediated immune resistance mechanism occurs in metastatic neuroblasts and provide a biological rationale for blocking the PD-1/PD-Ls axis in future combined immunotherapeutic approaches.
Insights
High-risk neuroblastoma (NB) exhibits immune resistance via PD-L1 expression, which is upregulated by IFNγ. This PD-L1 expression on NB cells and PD-1 on tumor-infiltrating lymphocytes suggests targeting the PD-1/PD-L1 axis for improved immunotherapy.
Area of Science:
- Oncology
- Immunology
- Cancer Research
Background:
- High-risk neuroblastoma (NB) has a poor prognosis despite immunotherapies.
- Immunotherapies can trigger IFNγ storms, leading to adaptive immune resistance via Programmed Death Ligand (PD-L) expression in tumor cells.
Purpose of the Study:
- To investigate the constitutive and inducible surface expression of PD-Ls in NB cells.
- To explore the potential of targeting the PD-1/PD-L1 axis in NB immunotherapy.
Main Methods:
- Analysis of PD-L1 and PD-L2 expression in NB cell lines and patient samples.
- Assessment of IFNγ-induced PD-L1 upregulation and acquisition.
- Characterization of PD-1 expressing lymphocytes in NB-infiltrated bone marrow.
Main Results:
- NB cell lines constitutively express PD-L1, with rare PD-L2 detection.
- IFNγ upregulates PD-L1 in NB cells and metastatic neuroblasts, irrespective of MYCN status.
- PD-1 expressing T cells, γδ T cells, and NK cells were found in patient bone marrow, with activated PD-1+ T cells.
Conclusions:
- A PD-L1-mediated immune resistance mechanism is present in metastatic neuroblasts.
- IFNγ responsiveness heterogeneity exists in metastatic neuroblasts.
- Blocking the PD-1/PD-L1 axis is a promising strategy for combined immunotherapy in NB.
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