| Literature DB >> 24936709 |
Muhammad Hanif1, Muhammad Azhar Hayat Nawaz2, Maria V Babak3, Jamshed Iqbal4, Alexander Roller5, Bernhard K Keppler5, Christian G Hartinger6.
Abstract
RuII(arene) complexes have emerged as a versatile class of compounds to design metallodrugs as potential treatment for a wide range of diseases including cancer and malaria. They feature modes of action that involve classic DNA binding like platinum anticancer drugs, may covalent binding to proteins, or multimodal biological activity. Herein, we report the synthesis and urease inhibition activity of RuII(arene) complexes of the general formula [RuII(η6-p-cymene)(L)Cl2] and [RuII(η6-p-cymene)(PPh3)(L)Cl]PF6 with S-donor systems (L) based on heterocyclic thiourea derivatives. The compounds were characterized by 1H-, 13C{1H}- and 31P{1H}-NMR spectroscopy, as well as elemental analysis. The crystal structure of [chlorido(η6-p-cymene)(imidazolidine-2-thione)(triphenylphosphine)ruthenium(II)] hexafluorophosphate 11 was determined by X-ray diffraction analysis. A signal in the range 175-183 ppm in the 13C{1H}-NMR spectrum indicates the presence of a thione rather than a thiolate. This observation was also confirmed in the solid state by X-ray diffraction analysis of 11 which shows a C=S bond length of 1.720 Å. The compounds were tested for urease inhibitory activity and the thiourea-derived ligands exhibited moderate activity, whereas their corresponding Ru(arene) complexes were not active.Entities:
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Year: 2014 PMID: 24936709 PMCID: PMC6271941 DOI: 10.3390/molecules19068080
Source DB: PubMed Journal: Molecules ISSN: 1420-3049 Impact factor: 4.411
Scheme 1Synthesis of [Ru(arene)(L)Cl2] 6–10; B) [Ru(arene)(L)(PPh3)Cl]PF6 11–13, where L = I, II, and III are imidazolidine-2-thione, 1,3-diazinane-2-thione and 1H-benzo[d]imidazole-2(3H)-thione, respectively.
Figure 1(a) The downfield region of the 1H-NMR spectrum of 13. (b) 31P{1H}-NMR spectrum showing a singlet at 29.5 ppm (PPh3) and a septet at −144.2 ppm (PF6−).
X-ray diffraction parameters for the measurement of single crystals of 11.
| Compound | 11 |
|---|---|
| CCDC N° | 1001627 |
| chemical formula | C31H35ClF6N2P2RuS·CH2Cl2 |
| 865.06 | |
| temperature (K) | 100(2) |
| crystal size (mm) | 0.23 × 0.20 × 0.02 |
| crystal color, habit | red, plate |
| crystal system | triclinic |
| space group | P-1 |
| 9.7845(11) | |
| 9.9124(8) | |
| 18.1017(18) | |
| 1729.5(3) | |
| 81.773(5) | |
| 86.024(6) | |
| 85.625(5) | |
| 2 | |
| 1.661 | |
| μ (mm−1) | 0.898 |
| F(000) | 876.0 |
| Θ range (deg) | 2.23 to 25.34 |
| −11/11 | |
| −11/10 | |
| −21/21 | |
| No. unique refls. | 6034 |
| No. parameters | 425 |
| 0.1076 | |
| 0.0465 | |
| 0.1104 | |
| 0.901 |
Figure 2ORTEP diagram of the two enantiomers of 11 drawn at 50% probability level. The co-crystallized CH2Cl2 and PF6− counter anions are not shown.
Selected bond lengths (Å) and angles (°) of 11.
| Bond Lengths (Å) | |
|---|---|
| Ru–S | 2.399(13) |
| Ru–P | 2.369(12) |
| Ru–Cl | 2.415(11) |
| Ru–centroid | 1.739 |
| S–Ru–P | 87.43(4) |
| S–Ru–Cl | 90.11(4) |
| P–Ru–Cl | 88.83(4) |
Inhibitory activity IC50 (μM) of thiourea derivatives and their Ru complexes against jack bean urease.
| Compound | IC50 (μM) |
|---|---|
| 232 ± 27 | |
| 118 ± 13 | |
| ˃600 | |
| 314 ± 62 | |
| ˃600 | |
| ˃600 | |
| ˃600 | |
| ˃600 | |
| ˃600 | |
| ˃600 | |
| ˃600 | |
| 22.1 ± 1.4 |