AI Article Synopsis

  • * The research involved screening 22 dirhodium and ruthenium complexes against various macrophage subtypes and cancer cells using both 2D and 3D co-culture systems, finding that some complexes exhibited specific toxicity to macrophages or cancer cells.
  • * Notably, certain complexes enhanced the effectiveness of the chemotherapy drug doxorubicin and increased the presence of calreticulin, which is linked to immunogenic cell death, while reducing an M2 macrophage

Article Abstract

Tumor associated macrophages (TAMs) suppress the cancer immune response and are a key target for immunotherapy. The effects of ruthenium and rhodium complexes on TAMs have not been well characterized. To address this gap in the field, a panel of 22 dirhodium and ruthenium complexes were screened against three subtypes of macrophages, triple-negative breast cancer and normal breast tissue cells. Experiments were carried out in 2D and biomimetic 3D co-culture experiments with and without irradiation with blue light. Leads were identified with cell-type-specific toxicity toward macrophage subtypes, cancer cells, or both. Experiments with 3D spheroids revealed complexes that sensitized the tumor models to the chemotherapeutic doxorubicin. Cell surface exposure of calreticulin, a known facilitator of immunogenic cell death (ICD), was increased upon treatment, along with a concomitant reduction in the M2-subtype classifier arginase. Our findings lay a strong foundation for the future development of ruthenium- and rhodium-based chemotherapies targeting TAMs.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9541094PMC
http://dx.doi.org/10.1002/chem.202104430DOI Listing

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