4.7 Article

In Vitro and In Vivo Effect of Palladacycles: Targeting A2780 Ovarian Carcinoma Cells and Modulation of Angiogenesis

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INORGANIC CHEMISTRY
卷 60, 期 6, 页码 3939-3951

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AMER CHEMICAL SOC
DOI: 10.1021/acs.inorgchem.0c03763

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资金

  1. FCT through the Applied Molecular Biosciences Unit, UCIBIO [UIDP/04378/2020, UIDB/04378/2020]
  2. Xunta de Galicia (Galicia, Spain) under the Grupos de Referencia Competitiva Programme [GRC2019/14]
  3. Spanish Ministry of Education [FPU15/07145]
  4. [SFRH/BPD/124612/2016]
  5. [PTDC/CVTEPI/6685/2014]

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This study demonstrated that palladacycles containing diphosphines showed selective cytotoxicity towards ovarian cancer cells, inducing apoptosis and autophagy through different pathways. While compound 3 displayed antiangiogenic effects crucial for fighting cancer progression, compound 9 promoted angiogenesis, indicating potential clinical applications for both pro- and antiangiogenic effects.
Palladacycles are versatile organometallic compounds that show potential for therapeutic use. Here are described the synthesis and characterization of mono- and dinuclear palladacycles bearing diphosphines. Their biological effect was investigated in A2780, an ovarian-derived cancer line, and in normal dermal fibroblasts. The compounds displayed selective cytotoxicity toward the A2780 cell line. Compound 3 decreased the cell viability through cell cycle retention in G0/G1, triggered apoptosis through the intrinsic pathway, and induced autophagy in A2780 cells. Compound 9 also induced cell cycle retention, apoptosis, and cellular detachment. Notably, compound 9 induced the production of intracellular reactive oxygen species (ROS). Our work demonstrated that compound 3 enters A2780 cells via active transport, which requires energy, while compound 9 enters A2780 cells mostly passively. The potential effect of palladacycles in angiogenesis was investigated for the first time in an in vivo chorioallantoic membrane model, showing that while compound 3 displayed an antiangiogenic effect crucial to fighting cancer progression, compound 9 promoted angiogenesis. These results show that palladacycles may be used in different clinical applications where pro- or antiangiogenic effects may be desirable.

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