Unlocking the potential of organopalladium complexes for high-grade serous ovarian cancer therapy

Abstract

High-Grade Serous Ovarian Cancer (HGSOC) is the most common and lethal subtype of ovarian cancer, known for its high aggressiveness and extensive genomic alterations. Typically diagnosed at an advanced stage, HGSOC presents formidable challenges in drug therapy. The limited efficacy of standard treatments, development of chemoresistance, scarcity of targeted therapies, and significant tumor heterogeneity render this disease incurable with current treatment options, highlighting the urgent need for novel therapeutic approaches to improve patient outcomes. In this study we report a straightforward and stereoselective synthetic route to novel Pd(II)-vinyl and -butadienyl complexes bearing a wide range of monodentate and bidentate ligands. Most of the synthesized complexes exhibited good to excellent in vitro anticancer activity against ovarian cancer cells. Particularly promising is the water-soluble complex bearing two PTA (1,3,5-triaza-7-phosphaadamantane) ligands and the Pd(II)-butadienyl fragment. This compound combines excellent cytotoxicity towards cancer cells with substantial inactivity towards non-cancerous ones. This derivative was selected for further studies on ex vivo tumor organoids and in vivo mouse models, which demonstrate its remarkable efficacy with surprisingly low collateral toxicity even at high dosages. Moreover, this class of compounds appears to operate through a ferroptotic mechanism, thus representing the first such example for an organopalladium compound.

Graphical abstract: Unlocking the potential of organopalladium complexes for high-grade serous ovarian cancer therapy

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Article information

Article type
Paper
Submitted
23 Jan 2025
Accepted
13 Feb 2025
First published
14 Feb 2025
This article is Open Access
Creative Commons BY-NC license

Dalton Trans., 2025, Advance Article

Unlocking the potential of organopalladium complexes for high-grade serous ovarian cancer therapy

T. Scattolin, E. Cavarzerani, D. Alessi, M. Mauceri, E. Botter, G. Tonon, I. Caligiuri, O. Repetto, U. Kamensek, S. K. Brezar, M. Dalla Pozza, S. Palazzolo, M. Cemazar, V. Canzonieri, N. Demitri, S. P. Nolan, G. Gasser, F. Visentin and F. Rizzolio, Dalton Trans., 2025, Advance Article , DOI: 10.1039/D5DT00194C

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