Checkpoint modulation-A new way to direct the immune system against renal cell carcinoma
J Bedke, S Kruck, G Gakis, A Stenzl… - Human vaccines & …, 2015 - Taylor & Francis
J Bedke, S Kruck, G Gakis, A Stenzl, PJ Goebell
Human vaccines & immunotherapeutics, 2015•Taylor & FrancisThe introduction of targeted therapies like the tyrosine kinase (TKI) and mammalian target of
rapamycin (mTOR) inhibitors has improved patients´ survival in general. Nevertheless the
prognosis remains limited. Therapies with a new mode of action are urgently warranted,
especially those who would provoke long-term responders or long-lasting complete
remissions as observed with unspecific immunotherapy with the cytokines interleukin-2 and
interferon-α. In the recent years a deeper understanding of the underlying immunology of T …
rapamycin (mTOR) inhibitors has improved patients´ survival in general. Nevertheless the
prognosis remains limited. Therapies with a new mode of action are urgently warranted,
especially those who would provoke long-term responders or long-lasting complete
remissions as observed with unspecific immunotherapy with the cytokines interleukin-2 and
interferon-α. In the recent years a deeper understanding of the underlying immunology of T …
The introduction of targeted therapies like the tyrosine kinase (TKI) and mammalian target of rapamycin (mTOR) inhibitors has improved patients´ survival in general. Nevertheless the prognosis remains limited. Therapies with a new mode of action are urgently warranted, especially those who would provoke long-term responders or long-lasting complete remissions as observed with unspecific immunotherapy with the cytokines interleukin-2 and interferon-α. In the recent years a deeper understanding of the underlying immunology of T cell activation led to the development of checkpoint inhibitors, which are mainly monocloncal antibodies and which enhances the presence of the co-stimulatory signals needed for T cell activation or priming. This review discusses the clinical data and ongoing studies available for the inhibition of the PD-1 (CD279) and CTLA-4 (CD152) axis in mRCC. In addition, potential future immunological targets are discussed. This approach of T-cell activation or re-activation by immunological checkpoint inhibition holds the inherent promise to directly affect the tumor cell and thereby to potentially cure a subset of patients with mRCC.
