Oxidative phosphorylation as a potential therapeutic target for cancer therapy
Article 2019 en
Authors
VS
Valentina Sica
JP
José Manuel Bravo‐San Pedro
GS
Gautier Stoll
Abstract
1 min read
In contrast to prior belief, cancer cells require oxidative phosphorylation (OXPHOS) to strive, and exacerbated OXPHOS dependency frequently characterizes cancer stem cells, as well as primary or acquired resistance against chemotherapy or tyrosine kinase inhibitors. A growing arsenal of therapeutic agents is being designed to suppress the transfer of mitochondria from stromal to malignant cells, to interfere with mitochondrial biogenesis, to directly inhibit respiratory chain complexes, or to disrupt mitochondrial function in other ways. For the experimental treatment of cancers, OXPHOS inhibitors can be advantageously combined with tyrosine kinase inhibitors, as well as with other strategies to inhibit glycolysis, thereby causing a lethal energy crisis. Unfortunately, most of the preclinical data arguing in favor of OXPHOS inhibition have been obtained in xenograft models, in which human cancer cells are implanted in immunodeficient mice. Future studies on OXPHOS inhibitors should elaborate optimal treatment schedules and combination regimens that stimulate—or at least are compatible with—anticancer immune responses for long‐term tumor control.
Shuan Rao, Laura Mondragón, Blanka Pranjic, Toshikatsu Hanada, Gautier Stoll, Thomas Köcher, Peng Zhang, Alexander Jaïs, Alexander Lercher, Andreas Bergthaler, Daniel Schramek, Katharina Haigh, Valentina Sica, Marion Leduc, Nazanine Modjtahedi, Tsung‐Pin Pai, Masahiro Onji, Iris Uribesalgo, Reiko Hanada, I. Kozieradzki, Rubina Koglgruber, Shane J. Cronin, Zhi‐Gang She, Franz Quehenberger, Helmut Popper, Lukas Kenner, Jody J. Haigh, Oliver Kepp, Malgorzata Rak, Kaican Cai, Guido Guido Kroemer, Josef Penninger
Discussion(0)
No comments yet. Be the first to comment.