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The Immunogenomic Landscape of Peripheral High-Dose IL-2 Pharmacodynamics in Patients with Metastatic Renal Cell
Kirk D Beebe1, Joel R Eisner1, John Guo1
1GeneCentric Therapeutics, Inc., Durham, NC.
Abstract:
High-dose (HD) IL-2 was the first immuno-oncology agent approved for treating advanced renal cell carcinoma and metastatic melanoma, but its use was limited because of substantial toxicities. Multiple next-generation IL-2 agents are being developed to improve tolerability. However, a knowledge gap still exists for the genomic markers that define the target pharmacology for HD IL-2 itself. In this retrospective observational study, we collected PBMC samples from 23 patients with metastatic renal cell carcinoma who were treated with HD IL-2 between 2009 and 2015. We previously reported the results of flow cytometry analyses. In this study, we report the results of our RNA-sequencing immunogenomic survey, which was performed on bulk PBMC samples from immediately before (day 1), during (day 3), and after treatment (day 5) in cycle 1 and/or cycle 2 of the first course of HD IL-2. As part of a detailed analysis of immunogenomic response to HD IL-2 treatment, we analyzed the changes in individual genes and immune gene signatures. By day 3, most lymphoid cell types had transiently decreased, whereas myeloid transcripts increased. Although most genes and/or signatures generally returned to pretreatment expression levels by day 5, certain ones representative of B cell, NK cell, and T cell proliferation and effector functions continued to increase, along with B cell (but not T cell) oligoclonal expansion. Regulatory T cells progressively expanded during and after treatment. They showed strong negative correlation with myeloid effector cells. This detailed RNA-sequencing immunogenomic survey of IL-2 pharmacology complements results of prior flow cytometry analyses. These data provide valuable pharmacological context for assessing PBMC gene expression data from patients dosed with IL-2-related compounds that are currently in development.
Insights
High-dose interleukin-2 (IL-2) therapy impacts immune cells in advanced kidney cancer. RNA sequencing reveals transient lymphoid cell decreases and myeloid increases, with sustained B and T cell activation and regulatory T cell expansion.
Area of Science:
- Immunology
- Oncology
- Genomics
Background:
- High-dose interleukin-2 (HD IL-2) was an early immuno-oncology treatment for advanced renal cell carcinoma and melanoma.
- Its clinical use was limited by significant toxicities.
- Next-generation IL-2 agents are under development, but genomic markers for HD IL-2 pharmacology remain unclear.
Purpose of the Study:
- To investigate the immunogenomic response to HD IL-2 in patients with metastatic renal cell carcinoma.
- To identify genomic markers associated with HD IL-2 treatment response.
- To provide pharmacological context for current and future IL-2-based therapies.
Main Methods:
- Retrospective observational study of 23 metastatic renal cell carcinoma patients treated with HD IL-2.
- RNA-sequencing of peripheral blood mononuclear cells (PBMCs) collected at baseline, day 3, and day 5 of treatment cycles.
- Analysis of individual gene expression and immune gene signatures.
Main Results:
- Transient decrease in lymphoid cell transcripts and increase in myeloid transcripts by day 3.
- Sustained increase in gene signatures related to B cell, NK cell, and T cell proliferation and effector functions by day 5.
- Progressive expansion of regulatory T cells, negatively correlated with myeloid effector cells.
- Evidence of B cell oligoclonal expansion, but not T cell oligoclonal expansion.
Conclusions:
- HD IL-2 treatment induces dynamic changes in PBMC gene expression, including transient lymphoid suppression and myeloid activation.
- Specific immune cell populations, particularly B cells and NK cells, show sustained activation.
- Regulatory T cell expansion during and after treatment suggests a complex immunomodulatory role.
- These findings offer crucial insights into HD IL-2 pharmacology and aid in evaluating novel IL-2-based therapeutics.
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