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Updated: Oct 2, 2025

A Syngeneic Mouse Model of Metastatic Renal Cell Carcinoma for Quantitative and Longitudinal Assessment of Preclinical Therapies
Published on: April 12, 2017
Inhibition of renalase drives tumour rejection by promoting T cell activation
Xiaojia Guo1, Shlomit Jessel2, Rihao Qu3
1Department of Medicine Section of Nephrology, Yale University, New Haven, CT, USA.
Background:
Although programmed cell death protein 1 (PD-1) inhibitors have revolutionised treatment for advanced melanoma, not all patients respond. We previously showed that inhibition of the flavoprotein renalase (RNLS) in preclinical melanoma models decreases tumour growth. We hypothesised that RNLS inhibition promotes tumour rejection by effects on the tumour microenvironment (TME).
Methods:
We used two distinct murine melanoma models, studied in RNLS knockout (KO) or wild-type (WT) mice. WT mice were treated with the anti-RNLS antibody, m28, with or without anti-PD-1. 10X single-cell RNA-sequencing was used to identify transcriptional differences between treatment groups, and tumour cell content was interrogated by flow cytometry. Samples from patients treated with immunotherapy were examined for RNLS expression by quantitative immunofluorescence.
Results:
RNLS KO mice injected with wild-type melanoma cells reject their tumours, supporting the importance of RNLS in cells in the TME. This effect was blunted by anti-cluster of differentiation 3. However, MØ-specific RNLS ablation was insufficient to abrogate tumour formation. Anti-RNLS antibody treatment of melanoma-bearing mice resulted in enhanced T cell infiltration and activation and resulted in immune memory on rechallenging mice with injection of melanoma cells. At the single-cell level, treatment with anti-RNLS antibodies resulted in increased tumour density of MØ, neutrophils and lymphocytes and increased expression of IFNγ and granzyme B in natural killer cells and T cells. Intratumoural Forkhead Box P3 + CD4 cells were decreased. In two distinct murine melanoma models, we showed that melanoma-bearing mice treated with anti-RNLS antibodies plus anti-PD-1 had superior tumour shrinkage and survival than with either treatment alone. Importantly, in pretreatment samples from patients treated with PD-1 inhibitors, high RNLS expression was associated with decreased survival (log-rank P = 0.006), independent of other prognostic variables.
Conclusions:
RNLS KO results in melanoma tumour regression in a T-cell-dependent fashion. Anti-RNLS antibodies enhance anti-PD-1 activity in two distinct aggressive murine melanoma models resistant to PD-1 inhibitors, supporting the development of anti-RNLS antibodies with PD-1 inhibitors as a novel approach for melanomas poorly responsive to anti-PD-1.
Insights
Inhibiting renalase (RNLS) promotes melanoma rejection by enhancing T-cell responses within the tumor microenvironment. Combining anti-RNLS antibodies with PD-1 inhibitors improves treatment outcomes in resistant melanoma models.
Area of Science:
- Immunology
- Oncology
- Biochemistry
Background:
- Advanced melanoma treatment has been revolutionized by PD-1 inhibitors, but not all patients respond.
- Previous studies indicated that inhibiting renalase (RNLS) reduces tumor growth in preclinical melanoma models.
- This study investigated if RNLS inhibition promotes tumor rejection by modulating the tumor microenvironment (TME).
Purpose of the Study:
- To determine the role of renalase (RNLS) in melanoma tumor growth and rejection.
- To investigate the effects of RNLS inhibition on the tumor microenvironment (TME).
- To evaluate the efficacy of combining anti-RNLS antibodies with anti-PD-1 therapy in melanoma models resistant to PD-1 inhibitors.
Main Methods:
- Utilized two distinct murine melanoma models in RNLS knockout (KO) and wild-type (WT) mice.
- Administered anti-RNLS antibody (m28) with or without anti-PD-1 therapy to WT mice.
- Employed 10X single-cell RNA-sequencing and flow cytometry to analyze transcriptional differences and immune cell infiltration. Examined RNLS expression in patient samples treated with immunotherapy.
Main Results:
- RNLS KO mice rejected wild-type melanoma tumors, indicating RNLS's importance in the TME.
- Anti-RNLS antibody treatment enhanced T-cell infiltration and activation, leading to immune memory.
- Combination therapy with anti-RNLS and anti-PD-1 antibodies resulted in superior tumor shrinkage and survival in aggressive melanoma models.
- High RNLS expression in pre-treatment patient samples correlated with decreased survival in patients receiving PD-1 inhibitors.
Conclusions:
- Renalase knockout (RNLS KO) leads to T-cell-dependent melanoma tumor regression.
- Anti-RNLS antibodies potentiate anti-PD-1 activity in aggressive, PD-1 inhibitor-resistant murine melanoma models.
- Combining anti-RNLS antibodies with PD-1 inhibitors represents a promising novel therapeutic strategy for melanoma poorly responsive to current immunotherapy.
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