Litcius/Paper detail

A gold-based inhibitor of oxidative phosphorylation is effective against triple negative breast cancer

R. Tyler Mertens, Jong Hyun Kim, Samuel Ofori, Chibuzor Olelewe, Paul J. Kamitsuka, Gunnar F. Kwakye, Samuel G. Awuah

2023Biomedicine & Pharmacotherapy11 citationsDOIOpen Access PDF

Abstract

Triple-negative breast cancer (TNBC) is associated with metabolic heterogeneity and poor prognosis with limited treatment options. New treatment paradigms for TNBC remains an unmet need. Thus, therapeutics that target metabolism are particularly attractive approaches. We previously designed organometallic Au(III) compounds capable of modulating mitochondrial respiration by ligand tuning with high anticancer potency in vitro and in vivo. Here, we show that an efficacious Au(III) dithiocarbamate (AuDTC) compound induce mitochondrial dysfunction and oxidative damage in cancer cells. Efficacy of AuDTC in TNBC mouse models harboring mitochondrial oxidative phosphorylation (OXPHOS) dependence and metabolic heterogeneity establishes its therapeutic potential following systemic delivery. This provides evidence that AuDTC is an effective modulator of mitochondrial respiration worthy of clinical development in the context of TNBC. ONE SENTENCE SUMMARY: Metabolic-targeting of triple-negative breast cancer by gold anticancer agent may provide efficacious therapy.

Topics & Concepts

Triple-negative breast cancerOxidative phosphorylationCancer researchContext (archaeology)Breast cancerMitochondrionCancerIn vivoPharmacologyChemistryMedicineBiologyInternal medicineBiochemistryBiotechnologyPaleontologyMetal complexes synthesis and propertiesCancer, Lipids, and MetabolismRNA modifications and cancer