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March 19, 2026Journal of Medicinal Chemistry2 citationsOpen Access

Novel 2-(2′-Benzothiazolyl)-benzimidazole-Based Iridium(III) Photocatalysts Exhibit Antiproliferative Effects in 2D and 3D Cancer Cells to Bypass Hypoxia-Induced Resistance

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ALAntonio Linero-ArtiagaMSMarie SvitelovaVNVojtěch Novohradský

Key Points

  • This research investigates the potential of iridium(III) complexes as photodynamic therapy agents for cancer treatment.
  • Synthesized seven bis-cyclometalated Ir(III) complexes.
  • Evaluated phototoxicity in both 2D and 3D cancer cell models.
  • Measured IC50 values and reactive oxygen species generation.
  • Assessed efficacy under hypoxic conditions using 3D spheroid cultures.
  • Complex 4 exhibited the highest phototoxicity and reactive oxygen species induction.
  • All complexes maintained serious antiproliferative effects even in low oxygen environments.
  • Achieved IC50 values in the nanomolar range, indicating strong efficacy.

Abstract

This study explores the therapeutic potential of seven bis-cyclometalated Ir(III) complexes (1-7), derived from the 2,2'-(benzothiazolyl)benzimidazole scaffold, as highly promising next-generation photoactivatable agents for type I and type II-guided photodynamic therapy (PDT) in lung and colorectal cancers. Their high phototoxicity in 2D and 3D cancer cell models, achieving IC50 values in the nanomolar region, was closely linked to the generation of singlet oxygen and type I reactive oxygen species (ROS) and the photooxidation of NADH, with complex 4 identified as the strongest ROS inducer and the most photocytotoxic complex. Notably, the iridium complexes proved to maintain their phototoxicity in hypoxic conditions. Using 3D spheroids, complex 4 demonstrated deep tissue penetration sought to overcome PDT limitations in solid tumors. Overall, the synthesized complexes showcase high efficacy and favorable pharmacological profiles, positioning them as promising candidates for the ROS-guided photodynamic treatment of cancers, including those located within hypoxic environments.

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Cite This Study

Linero-Artiaga et al. (2026) studied this question.

synapsesocial.com/papers/69bb9212496e729e6297f537https://doi.org/10.1021/acs.jmedchem.5c03280
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