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Ferroptosis and noncoding RNAs: exploring mechanisms in lung cancer treatment

Nadi Rostami Ravari, Farzad Sadri, Mohammad Ali Mahdiabadi, Yaser Mohammadi, Zahra Ourang, Zohreh Rezaei

2025Frontiers in Cell and Developmental Biology11 citationsDOIOpen Access PDF

Abstract

Lung cancer (LC) is a highly prevalent and deadly type of cancer characterized by intricate molecular pathways that drive tumor development, metastasis, and resistance to conventional treatments. Recently, ferroptosis, a controlled mechanism of cell death instigated by iron-dependent lipid peroxidation, has gained attention for its role in LC progression and treatment. Noncoding RNAs (ncRNAs), such as microRNAs (miRNAs) and long noncoding RNAs (lncRNAs), are emerging as key modulators of ferroptosis, significantly influencing LC biology. This review explores how ncRNAs control ferroptotic pathways and affect tumor growth, metastasis, and therapy resistance in LC. By understanding the dual functions of ncRNAs in both activating and inhibiting ferroptosis, we aim to uncover new therapeutic targets and strategies for LC. These insights provide a promising direction for the development of ncRNA-based treatments designed to induce ferroptosis, potentially improving therapeutic outcomes for patients with LC.

Topics & Concepts

microRNAMetastasisLong non-coding RNABiologyNon-coding RNATumor progressionMechanism (biology)Lung cancerCancer researchCancerBioinformaticsRNAGeneMedicineGeneticsPathologyEpistemologyPhilosophyCancer-related molecular mechanisms researchRNA modifications and cancerFerroptosis and cancer prognosis
Ferroptosis and noncoding RNAs: exploring mechanisms in lung cancer treatment | Litcius