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May 13, 2026Discover Applied Sciences0 citationsOpen Access

Therapeutic potential of anticancer enzymes derived from halophilic microorganisms

RFRushaan FaruquiMKMuskan KureshiMBMitul Bhuptani

Key Points

  • The aim is to explore the therapeutic potential of enzymes from halophilic microorganisms for cancer treatment.
  • Review of existing literature on halophilic enzymes and their anticancer activities.
  • Discussion on challenges like immunogenicity and delivery mechanisms of these enzymes.
  • Highlighting limitations of current research in in-vivo studies.
  • Halophilic enzymes exhibit anticancer effects by inhibiting amino acid metabolism in cell-based studies.
  • Challenges remain regarding the immunogenic response and efficient delivery of these enzymes in clinical settings.
  • Further validation and investigation are necessary for safe therapeutic applications.

Abstract

Cancer is one of the major causes of morbidity and mortality across the globe. Its occurrence is predicted to increase over the next few decades. The commonly used anticancer agents like chemotherapy, radiotherapy, and surgery are associated with severe side effects, drug resistance, and lack of specificity. Therefore, new anticancer agents are urgently needed. In this regard, halophiles, which are extremophilic microorganisms growing optimally under high salt concentration, have shown promising results as sources of bioactive compounds and enzymes with potential therapeutic applications. Halophilic extremophiles have shown to produce enzymes like l-asparaginase, l-methioninase, l-glutaminase, and l-arginase, which have shown anticancer activity against cancer cell lines by inhibiting amino acid metabolism. However, it is important to note that all these enzymes have shown anticancer activity only limited to cell-based studies and their efficacy and safety have not yet been explored in in-vivo cancer cell lines. In addition, some challenges such as immunogenicity and delivery mechanism have to be overcome for the application of these enzymes. This review article discusses the enzymes derived from halophiles with therapeutic applications and their potential applications in anticancer strategies, personalized enzyme therapy and protein engineering and also highlights current limitations and the need of further validation.

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Cite This Study

Faruqui et al. (2026) studied this question.

synapsesocial.com/papers/6a0414f679e20c90b4444d80https://doi.org/10.1007/s42452-026-08685-z
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