High-Dimensional Analyses Reveal IL15 Enhances Activation of Sipuleucel-T Lymphocyte Subsets and Reverses Immunoresistance

Author:

Saeed Muhammad A.1ORCID,Peng Bo1ORCID,Kim Kevin1ORCID,Rawat Kavita1ORCID,Kuehm Lindsey M.1ORCID,Siegel Zoe R.1ORCID,Borkowski Ariel1ORCID,Habib Nabih1ORCID,Van Tine Brian12ORCID,Sheikh Nadeem3ORCID,Tuyen Vu3ORCID,Thorek Daniel L.J.24ORCID,Fehniger Todd A.125ORCID,Pachynski Russell K.125ORCID

Affiliation:

1. 1Division of Oncology, Department of Medicine, Washington University School of Medicine, St Louis, Missouri.

2. 2Siteman Cancer Center, Washington University School of Medicine, St Louis, Missouri.

3. 3Dendreon Pharmaceuticals LLC, Seattle, Washington.

4. 4Mallinckrodt Institute of Radiology, Washington University School of Medicine, St Louis, Missouri.

5. 5Bursky Center for Human Immunology and Immunotherapy, Washington University School of Medicine, St Louis, Missouri.

Abstract

Abstract Sipuleucel-T (sip-T) is the only FDA-approved autologous cellular immunotherapy for metastatic castration-resistant prostate cancer (mCRPC). To elucidate parameters of the response profile to this therapy, we report high-dimensional analyses of sip-T using cytometry by time of flight (CyTOF) and show a lymphoid predominance, with CD3+ T cells constituting the highest proportion (median ∼60%) of sip-T, followed by B cells, and natural killer (NK) and NKT cells. We hypothesized that treatment of sip-T with homeostatic cytokines known to activate/expand effector lymphocytes could augment efficacy against prostate tumors. Of the cytokines tested, IL15 was the most effective at enhancing activation and proliferation of effector lymphocytes, as well as augmenting tumor cytotoxicity in vitro. Co-culture of sip-T with IL15 and control or prostate-relevant antigens showed substantial activation and expansion of CD8+ T cells and NKT cells in an antigen-specific manner. Adoptive transfer of IL15-treated sip-T into NSG mice resulted in more potent prostate tumor growth inhibition compared with control sip-T. Evaluation of tumor-infiltrating lymphocytes revealed a 2- to 14-fold higher influx of sip-T and a significant increase in IFNγ producing CD8+ T cells and NKT cells within the tumor microenvironment in the IL15 group. In conclusion, we put forward evidence that IL15 treatment can enhance the functional antitumor immunity of sip-T, providing rationale for combining IL15 or IL15 agonists with sip-T to treat patients with mCRPC.

Funder

Foundation for Barnes-Jewish Hospital

Publisher

American Association for Cancer Research (AACR)

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