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DNA Interaction and Biological Activities of Heteroleptic Palladium (II) Complexes

期刊

JOURNAL OF THE CHEMICAL SOCIETY OF PAKISTAN
卷 43, 期 2, 页码 227-243

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CHEM SOC PAKISTAN

关键词

Dithiocarbamate ligand; Pd (II) complex; DNA interaction study; Biological activity; Molinspiration calculations; Oxidative damage

资金

  1. higher education commission (HEC) of Pakistan [10669/KPK/NRPU/RD/HEC/2017]

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The manuscript discusses the synthesis and biological studies of a series of mixed ligand dithiocarbamate Palladium (II) complexes, focusing on their DNA binding, bioactivities like antibacterial and antifungal properties, as well as antioxidant potentials. The complexes showed interaction with DNA solutions, moderate antifungal and antibacterial behavior, and significant anti-mutagenic activities against H2O2-induced oxidative damage at non-genotoxic concentrations. Further structural adjustments may enhance the bioavailability and hydrophilic nature of the complexes.
The manuscript describes the binding of DNA as well as biological studies of some mixed ligand dithiocarbamate Palladium (II) complexes (1-5). The observed compounds are of general formulae [PdCl(DT)(PR3)]. The dithiocarbamate DT and PR3 groups are varied among the studied complexes as DT = bis[(2-methoxyethyl) dithiocarbamate)] (1 and 2), dibutyl dithiocarbamate (4 and 5), bis[(2-ethyl) hexyl dithiocarbamate)] (3); PR3 = triphenyl phosphine (1), benzy diphenyl phosphine (2), diphenyl-tertbutyl phpsphine (3), diphenyl-p-tolyl phosphine (4) and diphenyl-2-methoxy phenyl phosphine (5). The synthesized complexes were screened for DNA binding study via (UV Visible spectrophotometry and Viscometery) and biological activities such as anti-bacterial and anti-fungal, Molinspiration calculations and antioxidant potencies stimulated by hydrogen peroxide in human blood lymphocytes. In case of drug DNA interaction, complexes showed some sort of interaction with DNA solution. Almost all the complexes exhibited moderate antifungal and antibacterial behavior (against Gram positive and negative bacterial strains). The Molinspiration calculation study revealed that the said Pd (II) mixed complexes are biologically significant drugs having adequate molecular properties regarding drug likeness, except the log P values of complexes 3-5 because some structural adjustments must be done for enhancement of their bioavailability and hydrophilic nature. Regarding the antioxidant potential of complexes 1, 2 and 4, the H2O2 treatment of complexes violently decreased the action of antioxidant enzymes, superoxide dismutase and catalase and enhanced the level of thiobarbituric acid-reacting substances. Under experimental conditions, we conclude that all complexes act as anti-mutagens as they significantly suppress H2O2-induced oxidative damage at non-genotoxic concentrations.

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