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Systemic inflammation is a determinant of outcomes of CD40 agonist–based therapy in pancreatic cancer patients
Max M. Wattenberg, Veronica M. Herrera, Michael A. Giannone, Whitney L. Gladney, Erica L. Carpenter, Gregory L. Beatty
Max M. Wattenberg, Veronica M. Herrera, Michael A. Giannone, Whitney L. Gladney, Erica L. Carpenter, Gregory L. Beatty
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Research Article Immunology Oncology

Systemic inflammation is a determinant of outcomes of CD40 agonist–based therapy in pancreatic cancer patients

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Abstract

Agonistic anti-CD40 monoclonal antibody (mAb) therapy in combination with chemotherapy (chemoimmunotherapy) shows promise for the treatment of pancreatic ductal adenocarcinoma (PDA). To gain insight into immunological mechanisms of response and resistance to chemoimmunotherapy, we analyzed blood samples from patients (n = 22) with advanced PDA treated with an anti-CD40 mAb (CP-870,893) in combination with gemcitabine. We found a stereotyped cellular response to chemoimmunotherapy characterized by transient B cell, CD56+CD11c+HLA-DR+CD141+ cell, and monocyte depletion and CD4+ T cell activation. However, these cellular pharmacodynamics did not associate with outcomes. In contrast, we identified an inflammatory network in the peripheral blood consisting of neutrophils, cytokines (IL-6 and IL-8), and acute phase reactants (C-reactive protein and serum amyloid A) that was associated with outcomes. Furthermore, monocytes from patients with elevated plasma IL-6 and IL-8 showed distinct transcriptional profiles, including upregulation of CCR2 and GAS6, genes associated with regulation of leukocyte chemotaxis and response to inflammation. Patients with systemic inflammation, defined by neutrophil/lymphocyte ratio (NLR) greater than 3.1, had a shorter median overall survival (5.8 vs. 12.3 months) as compared with patients with NLR less than 3.1. Taken together, our findings identify systemic inflammation as a potential resistance mechanism to a CD40-based chemoimmunotherapy and suggest biomarkers for future studies.

Authors

Max M. Wattenberg, Veronica M. Herrera, Michael A. Giannone, Whitney L. Gladney, Erica L. Carpenter, Gregory L. Beatty

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Figure 3

An inflammatory network is present in the blood of patients with PDA.

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An inflammatory network is present in the blood of patients with PDA.
(A...
(A) Correlation matrix displaying Spearman’s correlations among clinical blood counts, cytokines, and acute phase reactants of n = 22 patients. Correlations are shown when P < 0.05. Positive correlations are shown in blue and negative correlations are in red. (B) Quantification of inflammatory cytokines in patient plasma among NLRlo (NLR < 3.1) and NLRhi (NLR > 3.1) patients. (C) Quantification of acute phase reactants in patient plasma. (D) Quantification of clinical blood counts. Each dot represents an individual HV (green) or NLRlo (blue) or NLRhi patient (red). Mann-Whitney U tests (B and C) and 1-way ANOVA with Tukey’s multiple comparisons tests (D) were performed. *P < 0.05; **P < 0.01; ***P < 0.001, ****P < 0.0001. HV, healthy volunteer; SAA, serum amyloid A; hs, high-sensitivity; WBC, white blood cell count; ANC, absolute neutrophil count; NLR, neutrophil-lymphocyte ratio; ABC, absolute basophil count; AMC, absolute monocyte count; AEC, absolute eosinophil count; ALC, absolute lymphocyte count.

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