DSpace

DSpace at RU >    University Library >    Academic bibliography >

SFX Query

Files in This Item:

File Description SizeFormat
publisher's version1.23 MBAdobe PDFView/Open

Title: Platinum-based drugs disrupt STAT6-mediated suppression of immune responses against cancer in humans and mice
Author(s): Lesterhuis, W.J. (298208342)
Punt, C.J.A. (085052248)
Hato, S.V. (298981254)
Eleveld-Trancikova, D. (314665498)
Jansen, B.J.H. (238721264)
Nierkens, S. (173080146)
Schreibelt, G. (303894865)
Boer, A. de
Herpen, C.M. van (270423702)
Kaanders, J.H.A.M. (114575762)
Krieken, J.H. van (071431772)
Adema, G.J. (087131714)
Figdor, C.G. (067631614)
Vries, I.J.M. de (162370016)
Publication year: 2011
Document type: Article / Letter to editor
Journal: Journal of Clinical Investigation
ISSN: 0021-9738
Volume: vol. 121
Issue: iss. 8
Start page: p. 3100
End page: p. 3108
Annotation: Lesterhuis, W Joost Punt, Cornelis J A Hato, Stanleyson V Eleveld-Trancikova, Dagmar Jansen, Bastiaan J H Nierkens, Stefan Schreibelt, Gerty de Boer, Annemiek Van Herpen, Carla M L Kaanders, Johannes H van Krieken, Johan H J M Adema, Gosse J Figdor, Carl G de Vries, I Jolanda M Research Support, Non-U.S. Gov't United States J Clin Invest. 2011 Aug 1;121(8):3100-8. doi: 10.1172/JCI43656. Epub 2011 Jul 18.
Abstract: Tumor microenvironments feature immune inhibitory mechanisms that prevent T cells from generating effective antitumor immune responses. Therapeutic interventions aimed at disrupting these inhibitory mechanisms have been shown to enhance antitumor immunity, but they lack direct cytotoxic effects. Here, we investigated the effect of cytotoxic cancer chemotherapeutics on immune inhibitory pathways. We observed that exposure to platinum-based chemotherapeutics markedly reduced expression of the T cell inhibitory molecule programmed death receptor-ligand 2 (PD-L2) on both human DCs and human tumor cells. Downregulation of PD-L2 resulted in enhanced antigen-specific proliferation and Th1 cytokine secretion as well as enhanced recognition of tumor cells by T cells. Further analysis revealed that STAT6 controlled downregulation of PD-L2. Consistent with these data, patients with STAT6-expressing head and neck cancer displayed enhanced recurrence-free survival upon treatment with cisplatin-based chemoradiation compared with patients with STAT6-negative tumors, demonstrating the clinical relevance of platinum-induced STAT6 modulation. We therefore conclude that platinum-based anticancer drugs can enhance the immunostimulatory potential of DCs and decrease the immunosuppressive capability of tumor cells. This dual action of platinum compounds may extend their therapeutic application in cancer patients and provides a rationale for their use in combination with immunostimulatory compounds.
Subject: ONCOL 3: Translational research
ONCOL 3: Translational research NCMLS 1B: Immune Regulation
ONCOL 3: Translational research NCMLS 1C: Tissue engineering and pathology
Subject: ONCOL 3: Translational research NCMLS 1C: Tissue engineering and pathology
Organization: Medical Oncology
Tumorimmunology
UMCN Extern
Radiation Oncology
Pathology
Paediatrics
Appears in Collections:Academic bibliography

Please use this identifier to cite or link to this item: http://hdl.handle.net/2066/97226

Items in DSpace are protected by copyright, with all rights reserved, unless otherwise indicated.

 

  DSpace Software Copyright © 2002-2011  Duraspace - Feedback