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Contact: Jillian Hurst
press_releases@the-jci.org
Journal of Clinical Investigation
Cancer cells spread and grow by avoiding detection and destruction by the immune system. Stimulation of the immune system can help to eliminate cancer cells; however, there are many factors that cause the immune system to ignore cancer cells. Regulatory T cells are immune cells that function to suppress the immune system response. In this issue of the Journal of Clinical Investigation, researchers led by Ronald Levy at Stanford University found that regulatory T cells that infiltrate tumors express proteins that can be targeted with therapeutic antibodies. Mice injected with antibodies targeting the proteins CTLA-4 and OX-40 had smaller tumors and improved survival. Moreover, treatment with these antibodies cleared both tumors at the primary site and distant metastases, including brain metastases that are usually difficult to treat. These findings suggest that therapies targeting regulatory T cells could be a promising approach in cancer treatment. In an accompanying commentary, Cristina Ghirelli and Thorsten Hagemann emphasize that in order for this approach to be clinically relevant, it will be important to show that targeting regulatory T cells in metastatic tumors also blocks growth.
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TITLE:
Depleting tumor-specific Tregs at a single site eradicates disseminated tumors
AUTHOR CONTACT:
Ronald Levy
Stanford University Medical Center, Stanford, CA, USA
Phone: 650-725-6452; Fax: 650-736-1454; E-mail: levy@stanford.edu
View this article at: http://www.jci.org/articles/view/64859?key=0b844b21d3af9fbb75eb
ACCOMPANYING COMMENTARY
TITLE:
Targeting immunosuppression for cancer therapy
AUTHOR CONTACT:
Thorsten Hagemann
Barts Cancer Institute, London, UNK, GBR
Phone: +442078825795; Fax: +442078826110; E-mail: t.hagemann@qmul.ac.uk
View this article at: http://www.jci.org/articles/view/69999?key=1894a675947229d0146a
[ | E-mail | Share ]
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AAAS and EurekAlert! are not responsible for the accuracy of news releases posted to EurekAlert! by contributing institutions or for the use of any information through the EurekAlert! system.
[ | E-mail | Share ]
Contact: Jillian Hurst
press_releases@the-jci.org
Journal of Clinical Investigation
Cancer cells spread and grow by avoiding detection and destruction by the immune system. Stimulation of the immune system can help to eliminate cancer cells; however, there are many factors that cause the immune system to ignore cancer cells. Regulatory T cells are immune cells that function to suppress the immune system response. In this issue of the Journal of Clinical Investigation, researchers led by Ronald Levy at Stanford University found that regulatory T cells that infiltrate tumors express proteins that can be targeted with therapeutic antibodies. Mice injected with antibodies targeting the proteins CTLA-4 and OX-40 had smaller tumors and improved survival. Moreover, treatment with these antibodies cleared both tumors at the primary site and distant metastases, including brain metastases that are usually difficult to treat. These findings suggest that therapies targeting regulatory T cells could be a promising approach in cancer treatment. In an accompanying commentary, Cristina Ghirelli and Thorsten Hagemann emphasize that in order for this approach to be clinically relevant, it will be important to show that targeting regulatory T cells in metastatic tumors also blocks growth.
###
TITLE:
Depleting tumor-specific Tregs at a single site eradicates disseminated tumors
AUTHOR CONTACT:
Ronald Levy
Stanford University Medical Center, Stanford, CA, USA
Phone: 650-725-6452; Fax: 650-736-1454; E-mail: levy@stanford.edu
View this article at: http://www.jci.org/articles/view/64859?key=0b844b21d3af9fbb75eb
ACCOMPANYING COMMENTARY
TITLE:
Targeting immunosuppression for cancer therapy
AUTHOR CONTACT:
Thorsten Hagemann
Barts Cancer Institute, London, UNK, GBR
Phone: +442078825795; Fax: +442078826110; E-mail: t.hagemann@qmul.ac.uk
View this article at: http://www.jci.org/articles/view/69999?key=1894a675947229d0146a
[ | E-mail | Share ]
?
AAAS and EurekAlert! are not responsible for the accuracy of news releases posted to EurekAlert! by contributing institutions or for the use of any information through the EurekAlert! system.
Source: http://www.eurekalert.org/pub_releases/2013-05/joci-mti051713.php
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