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April 9, 2020Frontiers in Oncology289 citationsOpen Access

Altered Iron Metabolism and Impact in Cancer Biology, Metastasis, and Immunology

RBRikki A. M. BrownKRKirsty RichardsonTKTasnuva D. Kabir

Key Points

  • To review the mechanisms by which altered iron metabolism supports cancer progression, metastasis, and immune evasion, and evaluate iron-targeting strategies for cancer therapy.
  • Synthesized current preclinical and clinical literature examining cellular iron regulation and metabolic adaptations during tumorigenesis.
  • Evaluated therapeutic approaches targeting iron pathways, including iron-depleting chelators, microRNA-based regulation, and induction of ferroptosis.
  • Elevated iron metabolism is linked to malignant transformation, tumor proliferation, therapeutic resistance, and immune evasion.
  • Dual therapeutic strategies target iron dependence: depleting intracellular iron with chelating agents/microRNAs, or inducing iron overload to trigger ferroptosis.
  • Combining iron-modulating agents with established targeted therapies and immunotherapies shows potential to overcome treatment resistance in metastatic disease.

Abstract

Iron is an essential nutrient that plays a complex role in cancer biology. Iron metabolism must be tightly controlled within cells. Whilst fundamental to many cellular processes and required for cell survival, excess labile iron is toxic to cells. Increased iron metabolism is associated with malignant transformation, cancer progression, drug resistance and immune evasion. Depleting intracellular iron stores, either with the use of iron chelating agents or mimicking endogenous regulation mechanisms, such as microRNAs, present attractive therapeutic opportunities, some of which are currently under clinical investigation. Alternatively, iron overload can result in a form of regulated cell death, ferroptosis, which can be activated in cancer cells presenting an alternative anti-cancer strategy. This review focuses on alterations in iron metabolism that enable cancer cells to meet metabolic demands required during different stages of tumorigenesis in relation to metastasis and immune response. The strength of current evidence is considered, gaps in knowledge are highlighted and controversies relating to the role of iron and therapeutic targeting potential are discussed. The key question we address within this review is whether iron modulation represents a useful approach for treating metastatic disease and whether it could be employed in combination with existing targeted drugs and immune-based therapies to enhance their efficacy.

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Cite This Study

Brown et al. (2020) studied this question.

synapsesocial.com/papers/69de9e2c210a0977fce94f6ahttps://doi.org/10.3389/fonc.2020.00476
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