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L-asparaginase-mediated Therapy in L-asparagine Auxotrophic Cancers: A Review
Rajashekar Sindhu1, Haravey K Manonmani2
1Department of Microbiology, Faculty of Life Sciences, JSS-AHER, Mysuru-570015, Karnataka, India.
Abstract:
Microbial L-asparaginase is the most effective first-line therapy used in the treatment protocols of paediatric and adult leukemia. Leukemic cells' auxotrophy for L-asparagine is exploited as a therapeutic strategy to mediate cell death through metabolic blockade of L-asparagine using L-asparaginase. Escherichia coli and Erwinia chrysanthemi serve as the major enzyme deriving sources accepted in clinical practice, and the enzyme has bestowed improvements in patient outcomes over the last 40 years. However, an array of side effects generated by the native enzymes due to glutamine co-catalysis and short serum stays augmenting frequent dosages intended a therapeutic switch towards developing bio better alternatives for the enzyme, including the formulations resulting in sustained local depletion of Lasparagine. In addition, the treatment with L-asparaginase in a few cancer types has proven to elicit drug-induced cytoprotective autophagy mechanisms and therefore warrants concern. Although the off-target glutamine hydrolysis has been viewed as contributing to the drug-induced secondary responses in cells deficient with asparagine synthetase machinery, the beneficial role of glutaminase-asparaginase in proliferative regulation of asparagine prototrophic cells has been looked forward. The current review provides an overview of the enzyme's clinical applications in leukemia and possible therapeutic implications in other solid tumours, recent advancements in drug formulations, and discusses the aspects of two-sided roles of glutaminase-asparaginases and drug-induced cytoprotective autophagy mechanisms.
Insights
Microbial L-asparaginase is a key leukemia treatment that depletes L-asparagine. Newer formulations aim to reduce side effects and explore its role in other cancers and autophagy.
Area of Science:
- Biochemistry
- Oncology
- Pharmacology
Background:
- Microbial L-asparaginase is a cornerstone therapy for leukemia, targeting cancer cells' dependence on L-asparagine.
- Escherichia coli and Erwinia chrysanthemi are primary sources, with 40 years of clinical success.
- Native enzymes cause side effects like glutamine co-catalysis and short serum half-lives, necessitating improved alternatives.
Purpose of the Study:
- To review L-asparaginase's clinical use in leukemia and potential in solid tumors.
- To discuss advancements in L-asparaginase drug formulations for sustained L-asparagine depletion.
- To explore the dual role of glutaminase-asparaginases and drug-induced autophagy.
Main Methods:
- Literature review of L-asparaginase applications and formulations.
- Analysis of enzyme mechanisms, including glutamine co-catalysis.
- Examination of drug-induced autophagy in cancer treatment.
Main Results:
- L-asparaginase effectively treats leukemia by blocking L-asparagine metabolism.
- Novel formulations aim for sustained L-asparagine depletion and reduced toxicity.
- Glutaminase-asparaginases show potential in asparagine-prototrophic cells, but drug-induced autophagy requires careful consideration.
Conclusions:
- L-asparaginase remains vital for leukemia, with ongoing research into better formulations and broader applications.
- Understanding the complex roles of glutaminase-asparaginases and autophagy is crucial for optimizing cancer therapy.
- Future directions include developing safer, more effective L-asparaginase-based treatments for various cancers.
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