In this study, we present the synthesis, characterization and cytotoxicity of six organometallic [Ru(II)(η--cymene)(,)Cl]Cl, [Rh(III)(η-CMe)(,)Cl]Cl and [Re(I)(CO)(,)Cl] complexes, in which the (,) ligands are sterane-based 2,2'-bipyridine derivatives (4-Me-bpy-St-OH, 4-Ph-bpy-St-OH). The solution chemical behavior of the ligands and the complexes was explored by UV-visible spectrophotometry and H NMR spectroscopy. The ligands and their Re(I) complexes are neutral at pH = 7.40; this contributes to their highly lipophilic character (log > +3). The Ru(II) and Rh(III) half-sandwich complexes are much more hydrophilic, and this property is greatly affected by the actual chloride ion content of the medium. The half-sandwich Ru and Rh complexes are highly stable in 30% (v/v) DMSO/water (<5% dissociation at pH = 7.40); this is further increased in water. The Rh(III)(η-CMe) complexes were characterized by higher water/chloride exchange and p constants compared to their Ru(II)(η--cymene) counterparts. The Re(I)(CO) complexes are also stable in solution over a wide pH range (2-12) without the release of the bidentate ligand; only the chlorido co-ligand can be replaced with OH at higher pH values. A comprehensive discussion of the binding affinity of the half-sandwich Ru(II) and Rh(III) complexes toward human serum albumin and calf-thymus DNA is also provided. The Ru(II)(η--cymene) complexes interact with human serum albumin intermolecular forces, while for the Rh(III)(η-CMe) complexes the coordinative binding mode is suggested as well. They are also able to interact with calf-thymus DNA, most likely the coordination of the guanine nitrogen. The Ru(II)(η--cymene) complexes were found to be the most promising among the tested compounds as they exhibited moderate-to-strong cytotoxic activity (IC = 3-11 μM) in LNCaP as well as in PC3 prostate cells in an androgen receptor-independent manner. They were also significantly cytotoxic in breast and colon adenocarcinoma cancer cell lines and showed good selectivity for cancer cells.
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http://dx.doi.org/10.1039/d3dt04138g | DOI Listing |
Dalton Trans
January 2025
Chemistry and Applied Physics, Te Aka Mātuatua - School of Science, University of Waikato, Private Bag 3105, Hamilton 3240, New Zealand.
Some half-sandwich compounds with a variety of ligands and metal centres have shown promising anticancer activity. Herein we report a series of reactions between the sulfonylthiourea ligands -TolSONHC(S)NHPh, EtSONHC(S)NHPh and CHSONHC(S)NHPh and [(η--cymene)RuCl], [(η-arene)RuCl(PR)] (arene = benzene or -cymene), [Cp*MCl(PR)] or [Cp*RhCl] (M = Ir(III), Rh(III)), Cp* = η-pentamethylcyclopentadienyl, PR = triphenylphosphine (PPh), tris(2-cyanoethyl)phosphine (tcep) and 1,3,5-triaza-7-phosphaadamantane (pta) and their corresponding piano stool complexes. Single crystal X-ray diffraction structure determinations indicated that the resulting linkage isomer of the complex, , (coordination S,N placing the sulfonyl group near the coordination sphere) or (coordination S,N, placing the sulfonyl group away from the coordination sphere), is directly related to the steric bulk around the metal centre.
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August 2024
Departament de Química Inorgànica i Orgànica, Secció de Química Inorgànica, Universitat de Barcelona, Martí i Franquès 1-11, 08028 Barcelona, Spain.
Singlet oxygen production and its reactivity have significant implications in fields ranging from polymer science to photodynamic therapy. Extensive research has focused on the development of organic-based materials and heavy metal complexes, including Ru(II), Rh(III), Ir(III) and Pt(II). However, metal complexes containing Au(I) have been scarcely explored and warrant further investigation.
View Article and Find Full Text PDFAcc Chem Res
August 2024
Key Laboratory of Precise Synthesis of Functional Molecules of Zhejiang Province, Department of Chemistry, School of Science and Research Center for Industries of the Future, Westlake University, Hangzhou, Zhejiang 310030, China.
ConspectusLewis π acids, particularly high-valent transition metals with vacant orbitals, can coordinate with unsaturated compounds such as alkynes and alkenes by means of π-bonding. The coordination enhances the electrophilicity of the bound compounds, thereby facilitating reactions─such as nucleophilic addition─that take place at the ligated carbon-carbon multiple bonds. This activation phenomenon occurs at the ligand rather than at the metal atom, and it has been extensively utilized in the development of catalytic methods.
View Article and Find Full Text PDFChempluschem
October 2024
Instituto de Síntesis Química y Catálisis Homogénea (ISQCH), CSIC-Universidad de Zaragoza, Departamento de Química Inorgánica, Pedro Cerbuna 12, 50009, Zaragoza, Spain.
Rh(III) and Ru(II) complexes, [RhCl(κ-NN'P-L)][SbF] (1) and [RuCl(κ-NN'P-L)] (2), were synthesised using the tetradentate ligand L (L=N,N-bis[(pyridin-2-yl)methyl]-[2-(diphenylphosphino)phenyl]methanamine). In each case only one diastereomer is detected, featuring cis-disposed pyridine groups. The chloride ligand trans to pyridine can be selectively abstracted by AgSbF, with the ruthenium complex (2) reacting more readily at room temperature compared to the rhodium complex (1) which requires elevated temperatures.
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March 2024
MTA-SZTE Lendület Functional Metal Complexes Research Group, Department of Molecular and Analytical Chemistry, Interdisciplinary Excellence Centre, University of Szeged, Dóm tér 7-8., H-6720 Szeged, Hungary.
In this study, we present the synthesis, characterization and cytotoxicity of six organometallic [Ru(II)(η--cymene)(,)Cl]Cl, [Rh(III)(η-CMe)(,)Cl]Cl and [Re(I)(CO)(,)Cl] complexes, in which the (,) ligands are sterane-based 2,2'-bipyridine derivatives (4-Me-bpy-St-OH, 4-Ph-bpy-St-OH). The solution chemical behavior of the ligands and the complexes was explored by UV-visible spectrophotometry and H NMR spectroscopy. The ligands and their Re(I) complexes are neutral at pH = 7.
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