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Role of Intracellular Iron in Switching Apoptosis to Ferroptosis to Target Therapy-Resistant Cancer Stem Cells

Journal

MOLECULES
Volume 27, Issue 9, Pages -

Publisher

MDPI
DOI: 10.3390/molecules27093011

Keywords

ferroptosis; apoptosis; cancer stem cells; drug resistance

Funding

  1. DBT
  2. UGC [F.30-456/2018 (BSR)]
  3. SERB [PDF/2015/000867]
  4. DBT New Delhi, for the Junior research fellowship

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This paper discusses the importance of iron in regulating cell death in tumor cells and cancer stem cells, as well as the molecular characteristics of iron-induced ferroptosis and apoptosis.
Iron is a crucial element required for the proper functioning of the body. For instance, hemoglobin is the vital component in the blood that delivers oxygen to various parts of the body. The heme protein present in hemoglobin comprises iron in the form of a ferrous state which regulates oxygen delivery. Excess iron in the body is stored as ferritin and would be utilized under iron-deficient conditions. Surprisingly, cancer cells as well as cancer stem cells have elevated ferritin levels suggesting that iron plays a vital role in protecting these cells. However, apart from the cytoprotective role iron also has the potential to induce cell death via ferroptosis which is a non-apoptotic cell death dependent on iron reserves. Apoptosis a caspase-dependent cell death mechanism is effective on cancer cells however little is known about its impact on cancer stem cell death. This paper focuses on the molecular characteristics of apoptosis and ferroptosis and the importance of switching to ferroptosis to target cancer stem cells death thereby preventing cancer relapse. To the best of our knowledge, this is the first review to demonstrate the importance of intracellular iron in regulating the switching of tumor cells and therapy resistant CSCs from apoptosis to ferroptosis.

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