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1.
Inorg Chem ; 57(3): 1398-1407, 2018 Feb 05.
Article in English | MEDLINE | ID: mdl-29336561

ABSTRACT

Reaction of [Pt(κ2-C,N-ppy)(dmso)Cl], 1 (Hppy = 2-phenylpyridine), with Na[H2B(mb)2] (Hmb = 2-mercapto-benzimidazole) smoothly afforded the complex {[(κ3-S,B,S-HB(mb)2]Pt(κ2-C,N-ppy)H}, 2, featuring a strong reverse-dative Pt → B σ interaction in the solid state. When dissolved in thf (or acetone) solution, 2 undergoes a reversible Pt-H bond activation, establishing an equilibrium between the hexacoordinated 2 and the tetracoordinate complex {[(κ2-S,S-H2B(mb)2]Pt(κ2-C,N-ppy)}, 3, as ascertained by multinuclear NMR. Hydrolysis of the B-N bond in 2/3 resulted ultimately in the formation of a dimeric half-lantern platinum(II,II) complex [{Pt(κ2-C,N-ppy)(µ2-κ2-N,S-mb)}2], 4. The SC-XRD structures of 2 and 4 are reported.

2.
Int J Biol Macromol ; 66: 86-96, 2014 May.
Article in English | MEDLINE | ID: mdl-24530367

ABSTRACT

In this study, three structurally related cationic Pt complexes, [Pt(ppy)(dppe)]CF3CO2: C1, [Pt(bhq)(dppe)]CF3CO2: C2, and [Pt(bhq)(dppf)]CF3CO2: C3, in which ppy=deprotonated 2-phenylpyridine, bhq=deprotonated benzo[h]quinoline, dppe=bis(diphenylphosphino)ethane and dppf=1,1'-bis(diphenylphosphino)ferrocene, were used for the assessment of their anticancer activities against Jurkat and MCF-7 cancer cell lines. The Pt complexes (C1-C3) demonstrated significant level of anticancer properties, as measured using 3-(4, 5-dimethylthiazol-2-yl)-2, 5-diphenyl tetrazolium bromide (MTT) assay. Moreover, the changes in nuclear morphology with Acridine Orange (AO) staining reveal that these complexes are capable to induce apoptosis, and only C1 stimulates activity of Caspase-3 in Jurkat cancer cells. To get a better insight into the nature of binding between these cationic Pt complexes and DNA, different spectroscopic techniques and gel electrophoresis were applied. On the basis of the results of UV/vis absorption spectroscopy, CD experiment and fluorescence quenching of ethidium bromide (EB)-DNA, the interaction between DNA and the Pt complexes is likely to occur through a mixed-binding mode. Overall, the present work suggests that a controlled modification could result in new potentially antitumor complexes which can survive the repair mechanism and induce facile apoptosis.


Subject(s)
Antineoplastic Agents/pharmacology , Cations/pharmacology , DNA/metabolism , Organoplatinum Compounds/pharmacology , Apoptosis/drug effects , Caspase 3/metabolism , Cell Line, Tumor , Humans , Jurkat Cells , MCF-7 Cells
3.
Proc Natl Acad Sci U S A ; 110(42): 16716-23, 2013 Oct 15.
Article in English | MEDLINE | ID: mdl-24082134

ABSTRACT

Unique tripodal S-donor capping agents with an attached carboxylate are found to bind tightly to the surface of CdSe nanocrystals (NCs), making the latter water soluble. Unlike that in similarly solubilized CdSe NCs with one-sulfur or two-sulfur capping agents, dissociation from the NC surface is greatly reduced. The impact of this behavior is seen in the photochemical generation of H2 in which the CdSe NCs function as the light absorber with metal complexes in aqueous solution as the H2-forming catalyst and ascorbic acid as the electron donor source. This precious-metal-free system for H2 generation from water using [Co(bdt)2](-) (bdt, benzene-1,2-dithiolate) as the catalyst exhibits excellent activity with a quantum yield for H2 formation of 24% at 520 nm light and durability with >300,000 turnovers relative to catalyst in 60 h.


Subject(s)
Cadmium/chemistry , Hydrogen/chemistry , Metal Nanoparticles/chemistry , Photochemical Processes , Selenium/chemistry , Water/chemistry , Catalysis
4.
Dalton Trans ; 42(37): 13369-80, 2013 Oct 07.
Article in English | MEDLINE | ID: mdl-23887622

ABSTRACT

Reaction of each of the known starting complexes [PtR(C^N)(SMe2)], 1, in which R = Me or p-MeC6H4 and C^N is either ppy (deprotonated 2-phenylpyridine) or bhq (deprotonated benzo[h]quinoline), with one equivalent of CF3CO2H, gave the complexes [Pt(C^N)(CF3CO2)(SMe2)], 3 (C^N = ppy, 3a; bhq, 3b). The bis-chelate complexes [Pt(C^N)(P^P)](CF3CO2), 4, were obtained by reaction of complexes 3 with one equivalent of either of the P^P bisphosphine reagents, dppf = 1,1'-bis(diphenylphosphino)ferrocene or dppe = bis(diphenylphosphino)ethane. Complexes 4 were alternatively made by reaction of the complexes [PtMe(κ(1)C-C^N)(P^P)], 2, with one equivalent of CF3CO2H. When the complex 3b was reacted with 0.5 equivalents of dppe, 0.5 equivalents of the related bis-chelate product, 4d, formed along with 0.5 equivalents of the unreacted starting complex 3b. In contrast, when the complex 3b was reacted with 0.5 equivalents of dppf, then the dimeric complex [Pt2(bhq)2(CF3CO2)2(µ-dppf)], 5, formed in pure form. In all the above-mentioned acid reactions, the M-R bond rather than the M-C bond of the cycloplatinated complex is cleaved. When the PPh3 analogues of complexes 1, i.e. the complexes [PtR(C^N)(PPh3)], 6, in which C^N is ppy or tpy = deprotonated 2-p-tolylpyridine, were reacted with one equivalent of CF3CO2H, the course of the reaction reversed and the M-C bonds of the cycloplatinated complexes are cleaved rather than the M-R bonds. The latter reaction gave [PtR(κ(1)N-HC^N)(PPh3)(CF3CO2)], as an equilibrium mixture of two isomers 7 and 8. Crystal structures of the typical complexes show a variety of extensive intermolecular hydrogen bonding involving C-H bonds from the different ligands and electronegative atoms (O or F) from the CF3CO2 moiety. On the basis of data obtained from kinetic studies (using (1)H NMR spectroscopy), a dissociative mechanism is proposed for the case of the 7c/8c isomerization process, involving dissociation of the κ(1)N-Htpy neutral ligand, rather than the alternative route of PPh3 or CF3CO2 ligand dissociation.


Subject(s)
Carbon/chemistry , Organoplatinum Compounds/chemistry , Platinum/chemistry , Crystallography, X-Ray , Kinetics , Models, Molecular , Molecular Structure , Organoplatinum Compounds/chemical synthesis , Protons , Stereoisomerism , Temperature
5.
Dalton Trans ; 39(47): 11396-402, 2010 Dec 21.
Article in English | MEDLINE | ID: mdl-20978702

ABSTRACT

The cyclometalated complexes [Pt(ppy)R(SMe(2))] or [Pt(bhq)R(SMe(2))], where ppyH = 2-phenylpyridine, bhqH = benzo[h]quinoline and R = methyl or p-tolyl, react with bis(diphenylphosphino)ethane, dppe, in a 1:1 ratio to give the corresponding complexes [Pt(κ(1)-C-ppy)R(dppe)] or [Pt(κ(1)-C-bhq)R(dppe)], in which the ppy or bhq ligands are monodentate and dppe is chelating. The similar reaction in a 2:1 ratio gives the binuclear complexes [{Pt(ppy)R}(2)(µ-dppe)] or [{Pt(bhq)R}(2)(µ-dppe)], in which the dppe ligands are in the unusual bridging bidentate bonding mode.

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