1. Academic Validation
  2. Curcumin Analogues Trigger HMOX1-Mediated Ferroptosis to Halt Endometrial Cancer Growth

Curcumin Analogues Trigger HMOX1-Mediated Ferroptosis to Halt Endometrial Cancer Growth

  • bioRxiv. 2025 Nov 19:2025.11.18.689080. doi: 10.1101/2025.11.18.689080.
Xiangxiang Wu 1 Jamie L Padilla 1 Lane E Smith 1 Lavanya Goodla 2 Kimberly K Leslie 1 Xiang Xue 2
Affiliations

Affiliations

  • 1 Division of Molecular Medicine, Department of Internal Medicine.
  • 2 Department of Biochemistry and Molecular Biology, University of New Mexico, Albuquerque, NM 87131.
Abstract

Background: Advanced endometrial Cancer remains challenging to treat due to limited therapeutic options and drug resistance. Ferroptosis, an iron-dependent form of cell death, offers a potential strategy for overcoming resistance. Curcumin analogues with improved bioavailability, such as HO-3867 and AKT-100, exhibit potent anti-cancer activity, but their mechanisms remain under-explored.

Methods: KLE, Hec50co and Ishikawa endometrial Cancer cells were treated with HO-3867 or AKT-100. RNA Sequencing, qPCR, and immunoblotting assessed ferroptosis-related gene expression, focusing on HMOX1. Intracellular iron and ROS were measured via FerroOrange and DCFH-DA staining. Cytotoxicity and colony formation were evaluated using CyQUANT assays, with pharmacological inhibitors (ZnPP, Liproxstatin-1, Z-VAD-FMK) and HMOX1 siRNA to dissect the roles of Ferroptosis and Apoptosis.

Results: Both analogues upregulated multiple Ferroptosis genes, prominently HMOX1. AKT-100 increased intracellular iron and ROS levels. Inhibition of HMOX1, Ferroptosis, or Apoptosis partially rescued cell viability, while HMOX1 knockdown enhanced clonogenic growth, confirming its key role in AKT-100-mediated cytotoxicity.

Conclusions: HO-3867 and AKT-100 induce HMOX1-mediated Ferroptosis and Apoptosis, effectively suppressing endometrial Cancer cell growth. These findings support the therapeutic potential of curcumin analogues and provide a foundation for in vivo studies targeting HMOX1 in endometrial Cancer.

Keywords

Curcumin analogues; Endometrial cancer; Ferroptosis; HMOX1; ROS.

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