AI Article Synopsis

  • Cancer is a major global health issue, and drug resistance limits the effectiveness of standard treatments, making the repurposing of metformin, an antidiabetic drug, a promising option.
  • Recent research shows a connection between heme metabolism and cancer cell survival, specifically the role of ALAS1 and FLVCR1a in regulating oxidative metabolism.
  • The study reveals that inhibiting the heme synthesis-export system enhances the effectiveness of metformin against colorectal cancer cells, suggesting a potential strategy to improve cancer treatment outcomes by targeting heme metabolism alongside metformin.

Article Abstract

Cancer is one of the leading causes of mortality worldwide. Beyond standard therapeutic options, whose effectiveness is often reduced by drug resistance, repurposing of the antidiabetic drug metformin appears promising. Heme metabolism plays a pivotal role in the control of metabolic adaptations that sustain cancer cell proliferation. Recently, we demonstrated the existence of a functional axis between the heme synthetic enzyme ALAS1 and the heme exporter FLVCR1a exploited by cancer cells to down-modulate oxidative metabolism. In colorectal cancer cell lines, the inhibition of heme synthesis-export system was associated with reduced proliferation and survival. Here, we aim to assess whether the inhibition of the heme synthesis-export system affects the sensitivity of colorectal cancer cells to metformin. Our data demonstrate that the inhibition of this system, either by blocking heme efflux with a specific shRNA or by inhibiting heme synthesis with 5-aminolevulinic acid, improves metformin anti-proliferative effect on colorectal cancer cell lines. In addition, we demonstrated that the same effect can be obtained in other kinds of cancer cell lines. Our study provides an in vitro proof of concept of the possibility to target heme metabolism in association with metformin to counteract cancer cell growth.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC8908972PMC
http://dx.doi.org/10.3390/cancers14051230DOI Listing

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