Literature DB >> 21638127

Skin tumor responsiveness to interleukin-2 treatment and CD8 Foxp3+ T cell expansion in an immunocompetent mouse model.

David M Foureau1, Iain H McKillop, Chase P Jones, Asim Amin, Richard L White, Jonathan C Salo.   

Abstract

Recombinant human interleukin-2 (rhIL-2) therapy is approved for treating patients with advanced melanoma yet significant responses are observed in only 10-15% of patients. Interleukin-2 induces Foxp3 expression in activated human CD8 T cells in vitro and expands circulating CD8 Foxp3+ T cells in melanoma patients. Employing IL-2 responsive (B16-F1, B16-BL6, JB/MS, MCA-205) and nonresponsive (JB/RH, B16-F10) subcutaneous tumor mouse models, we evaluated CD8 Foxp3+ T cell distribution and changes in response to rhIL-2 (50,000 U, i.p. or s.q., twice daily for 5 days). In tumor-free mice and subcutaneous tumor-bearing mouse models, CD8 Foxp3+ T cells were a rare but naturally occurring cell subset. Primarily located in skin-draining lymph nodes, CD8 Foxp3+ T cells expressed both activated T cell (CD28(+), CD44(+)) and Treg (CTLA4(+), PD1(lo/var), NKG2A(+/var)) markers. Following treatment with rhIL-2, a dramatic increase in CD8 Foxp3+ T cell prevalence was observed in the circulation and tumor-draining lymph nodes (TD.LNs) of animals bearing IL-2 nonresponsive tumors, while no significant changes were observed in the circulation and TD.LNs of animals bearing IL-2 responsive tumors. These findings suggest expansion of CD8 Foxp3+ T cell population in response to rhIL-2 treatment may serve as an early marker for tumor responsiveness to immunotherapy in an immune competent model. Additionally, these data may provide insight to predict response in patients with melanoma undergoing rhIL-2 treatment.

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Year:  2011        PMID: 21638127     DOI: 10.1007/s00262-011-1035-1

Source DB:  PubMed          Journal:  Cancer Immunol Immunother        ISSN: 0340-7004            Impact factor:   6.968


  5 in total

1.  In vitro assessment of choline dihydrogen phosphate (CDHP) as a vehicle for recombinant human interleukin-2 (rhIL-2).

Authors:  David M Foureau; Regina M Vrikkis; Chase P Jones; Katherine D Weaver; Douglas R Macfarlane; Jonathan C Salo; Iain H McKillop; Gloria D Elliott
Journal:  Cell Mol Bioeng       Date:  2012-12-01       Impact factor: 2.321

Review 2.  In vivo animal models for studying brain metastasis: value and limitations.

Authors:  Inderjit Daphu; Terje Sundstrøm; Sindre Horn; Peter C Huszthy; Simone P Niclou; Per Ø Sakariassen; Heike Immervoll; Hrvoje Miletic; Rolf Bjerkvig; Frits Thorsen
Journal:  Clin Exp Metastasis       Date:  2013-01-16       Impact factor: 5.150

3.  IL-2 immunotherapy in chronically SIV-infected Rhesus macaques.

Authors:  Julie Garibal; Mireille Laforge; Ricardo Silvestre; Shahul Mouhamad; Laure Campillo-Gimenez; Yves Lévy; Jérôme Estaquier
Journal:  Virol J       Date:  2012-09-28       Impact factor: 4.099

Review 4.  Programmed Cell Death-1 Polymorphisms Decrease the Cancer Risk: A Meta-Analysis Involving Twelve Case-Control Studies.

Authors:  Wenjing Dong; Mancheng Gong; Zhirong Shi; Jianjun Xiao; Junkai Zhang; Jiewen Peng
Journal:  PLoS One       Date:  2016-03-31       Impact factor: 3.240

5.  The application of hyaluronic acid-derivatized carbon nanotubes in hematoporphyrin monomethyl ether-based photodynamic therapy for in vivo and in vitro cancer treatment.

Authors:  Jinjin Shi; Rourou Ma; Lei Wang; Jing Zhang; Ruiyuan Liu; Lulu Li; Yan Liu; Lin Hou; Xiaoyuan Yu; Jun Gao; Zhenzhong Zhang
Journal:  Int J Nanomedicine       Date:  2013-07-01
  5 in total

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