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◆ Chemical science2026-08-21· Interpretability

Exploring chemical space for iridium(iii) complexes: a direct-to-biology (D2B) approach to identifying anticancer and antibacterial agents.

Timothy Kench, Yiran Wang, Jana Seefeldt, Aatikah Majid, Alex Man-Hei Yip, Justin Shum, Gianmarco G Terrones, Yassin Antar, Benedikt V Holbling, Kenneth Kam-Wing Lo, Nils Metzler-Nolte, Heather J Kulik, Ramon Vilar

原始摘要(英文原文)· Original abstract
Metal complexes possess tuneable chemical and biological properties that make them promising candidates for anticancer and antibacterial therapies. They are increasingly explored as alternatives to conventional drugs, particularly in photodynamic therapy (PDT), where light activation induces reactive oxygen species for localised cytotoxicity. In this study, we present a direct-to-biology (D2B) approach involving the synthesis and screening of 336 iridium(iii) complexes. Using an automated, data-driven approach, we evaluate ROS generation, lipophilicity, cytotoxicity in the dark and light, cellular uptake, and localisation across normal, cancer and bacterial cell lines. Information gained from subcellular localization studies was translated and checked against immunogenic cell death (ICD)-inducing properties of selected complexes. This large, internally consistent dataset was used to train machine learning models that predict both physicochemical properties and biological responses using inexpensive xTB-level descriptors. Virtual high-throughput screening of a >200 000-member library of Ir complexes reveals a clear divergence in chemical space between antibacterial and anticancer activity, providing actionable design rules for next-generation complexes. This work demonstrates the synergy between experimental and computational workflows, identifying lead compounds for anticancer and antibacterial applications and generating systematic, high-quality datasets for data-driven discovery.
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Exploring chemical space for iridium(iii) complexes: a direct-to-biology (D2B) approach to identifying anticancer and antibacterial agents. — 科研速览 Science Skim