Mitochondria specific highly cytoselective iridium(iii)-Cp* dipyridophenazine (dppz) complexes as cancer cell imaging

Nilmadhab Roy1, Utsav Sen, Shreya Ray Chaudhuri

  • 1Department of Chemistry, School of Advanced Sciences, VIT, Vellore-632014, Tamil Nadu, India. priyankar.paira@vit.ac.in.

Insights

Researchers developed novel iridium(III) complexes for cancer theranostics. These luminescent agents target cancer cells via DNA interaction and mitochondrial dysfunction, offering dual diagnostic and therapeutic benefits for improved cancer treatment strategies.

Area of Science:

  • Inorganic Chemistry
  • Medicinal Chemistry
  • Biochemistry

Background:

  • Cancer remains a leading cause of mortality, with unmet needs for effective treatments.
  • Current cancer therapies face limitations in efficacy and specificity.
  • Developing novel agents for targeted cancer treatment and diagnosis is crucial.

Purpose of the Study:

  • To design and synthesize novel iridium(III)-cyclopenta-dienyl (Cp*) dipyridophenazine (dppz) complexes as luminescent anticancer agents.
  • To explore the theranostic potential of these complexes, combining anticancer activity with imaging capabilities.
  • To evaluate the efficacy, cellular uptake, and targeting of these complexes in cancer cells.

Main Methods:

  • Synthesis of a series of Cp*Ir(iii)-dipyridophenazine complexes (IrL1-IrL7).
  • Cytotoxicity screening against colorectal adenocarcinoma (Caco-2) and human epitheloid cervix carcinoma (HeLa) cell lines.
  • Cellular imaging studies to assess localization and photoluminescence properties.
  • Evaluation of DNA interaction and mitochondrial dysfunction mechanisms.

Main Results:

  • The synthesized Cp*Ir(iii)-dipyridophenazine complexes exhibited significant anticancer activity and potent luminescent properties.
  • Complex IrL6 showed the highest cytoselectivity, while IrL3 demonstrated superior anticancer potency against aggressive colorectal cancer cells (HT-29).
  • Complex IrL5 emerged as the leading theranostic agent, displaying remarkable cytoselectivity, significant cellular imaging capabilities, and the highest quantum yield.

Conclusions:

  • Cp*Ir(iii)-dipyridophenazine complexes represent promising candidates for dual-action cancer theranostics.
  • The synergistic combination of iridium's photoluminescence and dppz's anticancer mechanisms offers a novel therapeutic strategy.
  • Further investigation into these complexes could lead to advanced imaging and treatment modalities for cancer.