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February 12, 2026Cell Death and Disease4 citationsOpen Access

CD36 enhances sensitivity of triple negative breast cancer cells to palmitate-induced ferroptosis

LCLara ClossetJFJean-Philippe FoyLLLila Louadj

Key Points

  • This research aims to explore the role of CD36 in promoting ferroptosis in triple negative breast cancer cells upon exposure to palmitate.
  • Investigated the effects of palmitate on ferroptosis in triple negative breast cancer cells.
  • Measured protein expression levels of CD36 and related lipid peroxidation markers.
  • Analyzed changes in gene expression associated with ferroptosis.
  • Correlated CD36 expression with clinical characteristics in breast cancer subtypes.
  • Palmitate induced ferroptosis in triple negative breast cancer cells by increasing CD36 expression.
  • Overexpression of CD36 led to enhanced lipid peroxidation and mitochondrial ROS production.
  • Increased levels of ferroptotic target genes and decreased anti-ferroptotic genes were observed.
  • Higher CD36 expression was linked with the luminal androgen receptor subtype, which is more sensitive to ferroptosis.

Abstract

Abstract Ferroptosis is a newly identified programmed cell death induced by iron-driven lipid peroxidation and implicated as a potential approach for tumor treatment. Breast tumors develop in a complex microenvironment whose main component is adipose tissue and gain aggressiveness through increased fatty acid uptake. Here, we demonstrated that palmitic acid (PA) induced ferroptosis in triple negative breast cancers (TNBC). We found that PA increases the protein expression levels of the long-chain fatty acid transporter CD36, leading to increased lipid uptake. Mechanistically, overexpression of CD36 increases lipid peroxidation, mitochondrial ROS production, the labile iron pool, and especially Fe 2+ content. Additionally, we found increased expression of ferroptotic target genes (HMOX1, ACSL1, SAT1) and decreased of anti-ferroptotic genes (GPX4 and FSP1) in TNBC following PA exposure. Overexpression of CD36 did not induce ferroptosis in estrogen receptor positive breast cancer. Clinically, higher CD36 expression correlated with the luminal androgen receptor (LAR) subtype of TNBC, known to exhibit a higher sensitivity to ferroptosis. Altogether, these data provide evidence for an essential role of the CD36 protein in the ferroptotic process induced by the saturated fatty acid PA, opening potential new therapeutic approaches promoting ferroptosis in the most aggressive breast cancers.

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Cite This Study

Closset et al. (2026) studied this question.

synapsesocial.com/papers/698d6edc5be6419ac0d54c1dhttps://doi.org/10.1038/s41419-026-08460-3
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