AI Article Synopsis

  • Ferroptosis is a newly discovered type of programmed cell death that shows potential in cancer treatment, although finding effective inducers is difficult.
  • Researchers designed new compounds that combine a specific chemical (ferrocene) with GPX4 inhibitors, making them capable of inducing ferroptosis and enhancing cancer cell death through reactive oxygen species (ROS).
  • This study highlights the effectiveness of these new compounds and suggests that using ferrocene can improve ferroptosis-targeted cancer therapies, paving the way for innovative treatments.

Article Abstract

Ferroptosis has emerged as a form of programmed cell death and exhibits remarkable promise for anticancer therapy. However, it is challenging to discover ferroptosis inducers with new chemotypes and high ferroptosis-inducing potency. Herein, we report a new series of ferrocenyl-appended GPX4 inhibitors rationally designed in a "one stone kills two birds" strategy. Ferroptosis selectivity assays, GPX4 inhibitory activity and CETSA experiments validated the inhibition of novel compounds on GPX4. In particular, the ROS-related bioactivity assays highlighted the ROS-inducing ability of 17 at the molecular level and their ferroptosis enhancement at the cellular level. These data confirmed the dual role of ferrocene as both the bioisostere motif maintaining the inhibition capacity of certain molecules with GPX4 and also as the ROS producer to enhance the vulnerability to ferroptosis of cancer cells, thereby attenuating tumor growth . This proof-of-concept study of ferrocenyl-appended ferroptosis inducers rational design may not only advance the development of ferroptosis-based anticancer treatment, but also illuminate the multiple roles of the ferrocenyl component, thus opening the way to novel bioorganometallics for potential disease therapies.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11234876PMC
http://dx.doi.org/10.1039/d4sc02002bDOI Listing

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