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Tofacitinib enhances delivery of antibody-based therapeutics to tumor cells through modulation of inflammatory cells
Nathan Simon, Antonella Antignani, Stephen M. Hewitt, Massimo Gadina, Christine Alewine, David FitzGerald
Nathan Simon, Antonella Antignani, Stephen M. Hewitt, Massimo Gadina, Christine Alewine, David FitzGerald
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Research Article Oncology Therapeutics

Tofacitinib enhances delivery of antibody-based therapeutics to tumor cells through modulation of inflammatory cells

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Abstract

The routes by which antibody-based therapeutics reach malignant cells are poorly defined. Tofacitinib, an FDA-approved JAK inhibitor, reduced tumor-associated inflammatory cells and allowed increased delivery of antibody-based agents to malignant cells. Alone, tofacitinib exhibited no antitumor activity, but combinations with immunotoxins or an antibody-drug conjugate resulted in increased antitumor responses. Quantification using flow cytometry revealed that antibody-based agents accumulated in malignant cells at higher percentages following tofacitinib treatment. Profiling of tofacitinib-treated tumor-bearing mice indicated that cytokine transcripts and various proteins involved in chemotaxis were reduced compared with vehicle-treated mice. Histological analysis revealed significant changes to the composition of the tumor microenvironment, with reductions in monocytes, macrophages, and neutrophils. Tumor-associated inflammatory cells contributed to non-target uptake of antibody-based therapeutics, with mice treated with tofacitinib showing decreased accumulation of therapeutics in intratumoral inflammatory cells and increased delivery to malignant cells. The present findings serve as a rationale for conducting trials where short-term treatments with tofacitinib could be administered in combination with antibody-based therapies.

Authors

Nathan Simon, Antonella Antignani, Stephen M. Hewitt, Massimo Gadina, Christine Alewine, David FitzGerald

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Figure 5

Treatment with tofacitinib reduced the number of inflammatory cells within the tumor microenvironment.

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Treatment with tofacitinib reduced the number of inflammatory cells with...
(A) Representative images of F4/80+ macrophage populations in KLM-1 xenografts after treatment with vehicle or tofacitinib. Original magnification, ×320. F4/80+ macrophages were counted from at least 20 randomly imaged fields, with counts from each field shown with the median for each treatment. (B) Representative images of CD11b+ myeloid populations in KLM-1 xenografts treated with vehicle or tofacitinib. Cells staining for CD11b were counted from at least 20 randomly imaged fields, with counts from each field shown with the median for each treatment. (C) Representative images of cell populations stained for myeloperoxidase (MPO) in KLM-1 xenografts after treatment with vehicle or tofacitinib. MPO+ cells (arrowheads) were counted from at least 20 randomly selected fields, with counts from each field shown with the median for each treatment. (D) Representative images of LY6G+ granulocyte populations in vehicle- or tofacitinib-treated KLM-1 xenografts. LY6G+ cells were counted from at least 20 randomly selected fields, with counts from each field shown with the median for each treatment. **P < 0.01; ***P < 0.001 by unpaired 2-tailed t test (A–D).

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