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Hydrophilic CO-Releasing Material of PEGlyated Ruthenium Carbonyl Complex.


ABSTRACT: The poor water-solubility and instability of Ru(II) carbonyl complex hamper the therapeutic application as CO releasing materials (CO-RMs). To enhance the hydrophilicity and bio-utility of CO, a robust Ru(I) carbonyl sawhorse skeleton was grafted with water-soluble PEGylated sidearm. In this case, 12 PEGylated sawhorse Ru2(CO)4 complexes were prepared with satisfactory yields and characterized by IR and 1H- and 13C- NMR. X-ray diffraction analysis of CO-RM 8, 13 and 14 revealed the featured diruthenium sawhorse skeleton and PEGylated axial ligands. The flask-shaking method measures the water-solubility of CO-RMs, indicating that both bridging carboxylate ligands and PEGlyated axial ligands regulate the hydrophilicity of these CO-RMs. Under photolysis conditions, CO-RM 4-13 sustainable released therapeutic amounts of CO in the myoglobin assay. The correlation of the CO release kinetics and hydrophilicity of CO-RMs demonstrated that the more hydrophilic CO-RM released CO faster. The biological test found that the low cytotoxic CO-RM 4 showed a specific anticancer activity toward HT-29 tumour cells.

SUBMITTER: Zhang X 

PROVIDER: S-EPMC9143562 | biostudies-literature | 2022 May

REPOSITORIES: biostudies-literature

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Hydrophilic CO-Releasing Material of PEGlyated Ruthenium Carbonyl Complex.

Zhang Xiao X   Guo Nan N   Yang Shuhong S   Khan Huma H   Zhang Weiqiang W  

Materials (Basel, Switzerland) 20220518 10


The poor water-solubility and instability of Ru(II) carbonyl complex hamper the therapeutic application as CO releasing materials (CO-RMs). To enhance the hydrophilicity and bio-utility of CO, a robust Ru(I) carbonyl sawhorse skeleton was grafted with water-soluble PEGylated sidearm. In this case, 12 PEGylated sawhorse Ru<sub>2</sub>(CO)<sub>4</sub> complexes were prepared with satisfactory yields and characterized by IR and <sup>1</sup>H- and <sup>13</sup>C- NMR. X-ray diffraction analysis of C  ...[more]

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