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Mechanistic Exploration of Half-Sandwich Iridium(III) Anticancer Compounds through Integrated Cellular, Proteomic,
Pavel Štarha1, Jaroslava Friedecká2, Renata Héžová3
1Department of Inorganic Chemistry, Faculty of Science, Palacký University Olomouc, 17. listopadu 12, 77146 Olomouc, Czech Republic.
Abstract:
New half-sandwich iridium(III) compounds [Ir(η5-Cpx)Cl(L1-3)]PF6 (1-6), combining Cp* or Cpph with N,P-coordinated phosphinoalkylamines L1-L3, were tested in different cancer cells (2D and 3D cultures), including MOR/CPR cisplatin-resistant lung carcinoma. Best-performing compound 3 outperformed its Cpph analogue 6 and cisplatin in MOR/CPR cells while sparing noncancerous cells. Multiomics profiling shows a non-DNA-targeted mechanism: rapid integrated stress response with ER stress (DDIT3/CHOP) and oxidative stress (HMOX1, ATF3), nucleolar stress, and primary inhibition of ribosome biogenesis and mitochondrial translation. These changes drive translational shutdown, suppression of oxidative phosphorylation with a glycolytic shift, and G1 arrest, alongside endolysosomal remodeling (enhanced vesicular uptake, reduced degradative capacity) that favors intracellular retention. The phenotype is predominantly cytostatic with apoptotic priming. In vivo, 3 suppressed tumor growth and activated apoptosis with low systemic toxicity. Compound 3 thus emerges as a promising prototype Ir(III) metallodrug that disrupts nucleolar, mitochondrial, and lysosomal homeostasis to overcome resistance.
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