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March 29, 2026Inorganic Chemistry3 citationsOpen Access

Dual-Action NSAID-Gold(I) Alkynyl Hybrids for Synergistic Anti-Inflammatory and Anticancer Therapy of Colorectal Cancer

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JSJavier SáezLHLuis Vicente Herrera-MarcosMRMaría Jesús Rodríguez-Yoldi

Key Points

  • This research aims to develop NSAID-derived gold(I) complexes for targeting colorectal cancer through anti-inflammatory and anticancer mechanisms.
  • Designed NSAID-derived alkyne ligands coordinated to gold(I) fragments.
  • Synthetized and analyzed eight new alkynyl gold(I) derivatives.
  • Tested antiproliferative activity against Caco-2/TC7 colon cancer cell lines and evaluated cytotoxicity in other cell types.
  • Conducted mechanistic studies on the most active complex, monitoring its effects on enzymes and cellular behavior.
  • The gold(I) complexes showed potent antiproliferative effects, outperforming oxaliplatin and comparable to auranofin.
  • Complex [Au(L1)JP] significantly inhibits thioredoxin reductase and triggers ROS overproduction, leading to G1-phase cell cycle arrest.
  • Selective inhibition of COX-2 and reduction of IL-8 expression was observed without affecting PTGS2 transcription.

Abstract

Colorectal cancer (CRC) remains a major global health challenge, in which chronic inflammation and redox dysregulation are key drivers of tumor progression. Here, we report a rationally designed family of NSAID-derived alkyne ligands coordinated to JohnPhos-gold(I) fragments, affording eight new alkynyl gold(I) derivatives. Complexes based on naproxen, ibuprofen, and salicylic acid derivatives display potent antiproliferative activity against Caco-2/TC7 colon cancer cells, outperforming oxaliplatin and being comparable to auranofin, while showing markedly reduced cytotoxicity in breast cancer lines and nonmalignant cells, thus indicating promising selectivity. Mechanistic studies revealed that the most active complex, Au(L1)JP (1), which contains a naproxen-derived alkyne, inhibits thioredoxin reductase (TrxR), triggers ROS overproduction, disrupts mitochondrial membrane potential, and induces G1-phase arrest while only marginally increasing apoptosis. This suggests the involvement of additional forms of cell death or cytostatic effects. Additionally, complex 1 selectively inhibits the enzyme cyclooxygenase-2 (COX-2) over COX-1 and reduces IL-8 expression without affecting PTGS2 transcription, highlighting a post-transcriptional anti-inflammatory action. These results support NSAID-derived alkynyl gold(I) complexes as promising multitarget agents for colorectal cancer intervention, combining disruption and COX-2 modulation.

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Cite This Study

Sáez et al. (2026) studied this question.

synapsesocial.com/papers/69c8c30dde0f0f753b39dad6https://doi.org/10.1021/acs.inorgchem.5c05908
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