Abstract
Arginine deprivation is a novel antimetabolite strategy for the treatment of argininedependent cancers that exploits differential expression and regulation of key urea cycle enzymes. Several studies have focused on inactivation of argininosuccinate synthetase 1 (ASS1) in a range of malignancies, including melanoma, hepatocellular carcinoma (HCC), mesothelial and urological cancers, sarcomas, and lymphomas. Epigenetic silencing has been identified as a key mechanism for loss of the tumor suppressor role of ASS1 leading to tumoral dependence on exogenous arginine. More recently, dysregulation of argininosuccinate lyase has been documented in a subset of arginine auxotrophic glioblastoma multiforme, HCC and in fumarate hydratasemutant renal cancers. Clinical trials of several arginine depletors are ongoing, including pegylated arginine deiminase (ADI-PEG20, Polaris Group) and bioengineered forms of human arginase. ADI-PEG20 is furthest along the path of clinical development from combinatorial phase 1 to phase 3 trials and is described in more detail. The challenge will be to identify tumors sensitive to drugs such as ADI-PEG20 and integrate these agents into multimodality drug regimens using imaging and tissue/fluid-based biomarkers as predictors of response. Lastly, resistance pathways to arginine deprivation require further study to optimize arginine-targeted therapies in the oncology clinic. © 2013 by the Korean Cancer Association.
Author supplied keywords
Cite
CITATION STYLE
Phillips, M. M., Sheaff, M. T., & Szlosarek, P. W. (2013, December). Targeting arginine-dependent cancers with arginine-degrading enzymes: Opportunities and challenges. Cancer Research and Treatment. https://doi.org/10.4143/crt.2013.45.4.251
Register to see more suggestions
Mendeley helps you to discover research relevant for your work.