Related Experiment Video
Updated: Feb 2, 2026

Isolating Malignant and Non-Malignant B Cells from lck:eGFP Zebrafish
Published on: February 22, 2019
Arginine-Depleting Enzymes - An Increasingly Recognized Treatment Strategy for Therapy-Refractory Malignancies
Christin Riess1,2, Fatemeh Shokraie2,3, Carl Friedrich Classen2
1Virology, and Hygiene, Rostock University Medical Center, Rostock, Germany.
Abstract:
Arginine auxotrophy occurs in certain tumor types and is usually caused by the silencing of argininosuccinate synthetase 1 or arginine lyase genes. Such tumors are often associated with an intrinsic chemoresistance and thus a poor prognosis. Arginine auxotrophy however renders these tumors vulnerable to treatment with arginine-degrading enzymes. Among the most frequently applied arginine-degrading agents are bacterial arginine deiminases (ADI). The anti-cancerous effects of ADI derived from different bacteria were extensively studied in numerous preclinical cell culture and xenograft models. Mycoplasma-derived ADI-PEG20 is most commonly used and is currently under clinical investigation as a single agent therapeutic as well as in combination with different antineoplastic compounds. Mechanistically, ADI is capable of reducing metabolic activity in tumor cells, contributing to autophagy, senescence and apoptosis in arginine auxotrophic cells. Although clinical trials are promising, the resistance development upon initial treatment response is an increasing challenge. Furthermore, interference of ADI with the tumor microenvironment is poorly understood. In the present review, we outline recent experimental ADI-based treatment approaches and their translation into the clinic. Furthermore, we summarize new insights into the molecular mechanisms underlying the anti-cancer effects of ADI that might facilitate the refinement of ADI-based combination therapy approaches.
Insights
Certain tumors require arginine (an amino acid) for growth and are resistant to chemotherapy. Arginine-degrading enzymes, like arginine deiminase (ADI), offer a promising cancer treatment strategy by starving these tumors.
Area of Science:
- Biochemistry
- Oncology
- Enzymology
Background:
- Arginine auxotrophy, caused by silenced argininosuccinate synthetase 1 or arginine lyase genes, is linked to chemoresistance and poor prognosis in specific cancers.
- Tumors with arginine auxotrophy are uniquely susceptible to arginine-degrading enzymes.
Purpose of the Study:
- To review current experimental and clinical applications of arginine deiminases (ADI) in cancer therapy.
- To summarize novel insights into the mechanisms of ADI's anti-cancer effects and guide combination therapy development.
Main Methods:
- Review of preclinical (cell culture, xenograft models) and clinical studies on ADI-based cancer treatments.
- Analysis of molecular mechanisms underlying ADI's impact on tumor cell metabolism and the tumor microenvironment.
Main Results:
- Arginine deiminases (ADI), particularly Mycoplasma-derived ADI-PEG20, demonstrate anti-cancer effects by reducing tumor cell metabolic activity, inducing autophagy, senescence, and apoptosis.
- Clinical trials show promise for ADI as a single agent and in combination therapies, though resistance development is a challenge.
Conclusions:
- ADI-based therapies represent a viable strategy for arginine auxotrophic tumors, with ongoing research focusing on optimizing combination treatments.
- Further understanding of ADI's interaction with the tumor microenvironment is crucial for refining therapeutic strategies and overcoming resistance.
Related Concept Videos
Treatment Strategies for Psychological Disorders
Psychological therapies focus on modifying emotions, thoughts, and behaviors through talking, interpreting, listening, rewarding, challenging, and modeling. Clinical psychologists, counselors, and social workers commonly practice psychotherapy. Clinical...
Enzymes
Enzyme deficiencies can often translate into life-threatening diseases. For example, a genetic abnormality resulting in the deficiency of the enzyme G6PD...
Enzyme Kinetics
Scientists typically study enzyme kinetics with a fixed amount of enzyme in the controlled environment of a test tube. When more reactant, or substrate, is...
Increasing Function
Gene Therapy
Treatment for Pulmonary Arterial Hypertension: Oxygen Therapy for Respiratory Failure
Oxygen therapy is vital in increasing and maintaining blood oxygen levels in PAH patients. As a result, it aids in reducing fatigue,...

