Search results for "Coordination complex"

showing 10 items of 381 documents

Metal Ions and Metal Complexes in Alzheimer's Disease.

2015

Background: Alzheimer’s disease (AD) is the most common form of dementia that seriously affects daily life. Even if AD pathogenesis is still subject of debate, it is generally accepted that cerebral cortex plaques formed by aggregated amyloid-β (Aβ) peptides can be considered a characteristic pathological hallmark. It is well known that metal ions play an important role in the aggregation process of Aβ. Methods: This review focuses on the anti-Aβ aggregation activity of chelating ligands as well as on the use of metal complexes as diagnostic probes and as potential drugs. Conclusion: While chelating agents, such as curcumin or flavonoid derivatives, are currently used to capture metal ions …

0301 basic medicineStereochemistryMetal ions in aqueous solutionchemistry.chemical_elementProtein aggregationImagingPathogenesis03 medical and health scienceschemistry.chemical_compoundProtein AggregatesAlzheimer DiseaseCoordination ComplexesMetals HeavyDrug DiscoveryAD drugmedicineDementiaAnimalsHumansChelationMetal ionPharmacologyAmyloid beta-PeptidesDrug Discovery3003 Pharmaceutical ScienceAnti-aβ aggregating agentmedicine.diseaseCombinatorial chemistryRuthenium030104 developmental biologychemistrySettore CHIM/03 - Chimica Generale E InorganicaCurcuminMetal complexeAlzheimer's diseaseAlzheimer’s diseaseCurrent pharmaceutical design
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Pb2+complexes of small-cavity azamacrocyclic ligands: thermodynamic and kinetic studies

2017

The synthesis, acid-base behavior and Pb2+ coordination chemistry of the new aza-scorpiand like ligand 5-[2-(N-2-fluorenyl)ethylamino]-2,5,8-triaza[9]-2,6-pyridinophane (L1) have been studied by potentiometry, NMR and spectrofluorimetric titrations, and the results are compared with those obtained for the related compounds L2, lacking the fluorenyl group, and L3, the macrocycle lacking the pendant arm. The crystal structures obtained for complexes [PbL1][PbL1Cl](NO3)Cl2·4H2O (1) and [PbL3](ClO4)2 (2) reveal that the metal ion is located over the plane defined by the nitrogen atoms of the macrocyclic core due to its inability to accommodate the large Pb2+ ion in the macrocyclic cavity. For L…

0301 basic medicinechemistry.chemical_classification030102 biochemistry & molecular biologyStereochemistryLigandMetal ions in aqueous solutionCrystal structure010402 general chemistry01 natural sciencesDissociation (chemistry)0104 chemical sciencesCoordination complexIonInorganic ChemistryMetal03 medical and health sciencesCrystallographychemistryvisual_artvisual_art.visual_art_mediumLone pairDalton Transactions
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Histidine tracts in human transcription factors: insight into metal ion coordination ability

2017

Consecutive histidine repeats are chosen both by nature and by molecular biologists due to their high affinity towards metal ions. Screening of the human genome showed that transcription factors are extremely rich in His tracts. In this work, we examine two of such His-rich regions from forkhead box and MAFA proteins—MB3 (contains 18 His) and MB6 (with 21 His residues), focusing on the affinity and binding modes of Cu2+ and Zn2+ towards the two His-rich regions. In the case of Zn2+ species, the availability of imidazole nitrogen donors enhances metal complex stability. Interestingly, an opposite tendency is observed for Cu2+ complexes at above physiological pH, in which amide nitrogens part…

0301 basic medicineinorganic chemicalsMaf Transcription Factors LargeStereochemistryMetal ions in aqueous solutionPeptideNerve Tissue Proteins010402 general chemistry01 natural sciencesBiochemistryInorganic ChemistryMetal03 medical and health scienceschemistry.chemical_compoundCoordination ComplexesAmideImidazoleHomeostasisHumansHistidineAmino Acid SequenceTranscription factorHistidineLigand bindingchemistry.chemical_classificationOriginal PaperMass spectrometryForkhead Transcription FactorsHydrogen-Ion ConcentrationPeptide Fragments0104 chemical sciencesZinc030104 developmental biologyBinding affinitychemistryvisual_artPeptidevisual_art.visual_art_mediumThermodynamicsHuman genomeCopperProtein BindingJournal of Biological Inorganic Chemistry
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Pyrithione-based ruthenium complexes as inhibitors of aldo-keto reductase 1C enzymes and anticancer agents.

2016

Four ruthenium complexes of clinically used zinc ionophore pyrithione and its oxygen analog 2-hydroxypyridine N-oxide were prepared and evaluated as inhibitors of enzymes of the aldo–keto reductase subfamily 1C (AKR1C). A kinetic study assisted with docking simulations showed a mixed type of inhibition consisting of a fast reversible and a slow irreversible step in the case of both organometallic compounds 1A and 1B. Both compounds also showed a remarkable selectivity towards AKR1C1 and AKR1C3 which are targets for breast cancer drug design. The organoruthenium complex of ligand pyrithione as well as pyrithione itself also displayed toxicity on the hormone-dependent MCF-7 breast cancer cell…

AKR1C1StereochemistryPyridinesIonophoreAldo-Keto Reductaseschemistry.chemical_elementAntineoplastic AgentsZincReductase010402 general chemistry01 natural sciencesRutheniumInorganic ChemistryCoordination ComplexesHumansCell Proliferationchemistry.chemical_classificationAldo-keto reductase010405 organic chemistryChemistryThiones0104 chemical sciencesRutheniumEnzymeDocking (molecular)MCF-7 CellsDalton transactions (Cambridge, England : 2003)
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DNA-binding of zinc(II) and nickel(II) salphen-like complexes extrapolated at 1 M salt concentration: Removing the ionic strength bias in physiologic…

2020

Abstract The DNA-binding of two salphen-like metal complexes of nickel(II) (1) and zinc(II) (2) was investigated in different ionic strength solutions by absorption spectroscopy. The data analysis allowed us to obtain the values of their extrapolated DNA-binding constant in physiological conditions, with DNA-binding strength in the order Ni > Zn, and to give relative weight to the electrostatic and non-electrostatic contributions to their DNA-interaction.

Absorption spectroscopyInorganic chemistryStatic ElectricitySalt (chemistry)chemistry.chemical_elementRelative weightZincPhenylenediaminesSodium Chloride010402 general chemistry01 natural sciencesBiochemistryInorganic ChemistryMetalchemistry.chemical_compoundIonic strengthCoordination ComplexesNickelSalphenchemistry.chemical_classification010405 organic chemistryChemistrySpectrum AnalysisOsmolar ConcentrationDNA0104 chemical sciencesNickelZincIonic strengthSettore CHIM/03 - Chimica Generale E Inorganicavisual_artvisual_art.visual_art_mediumUV–visible absorptionDNAJournal of Inorganic Biochemistry
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Insights into the decomposition pathway of a lutetium alkylamido complex via intramolecular C–H bond activation

2017

Abstract Synthesis, characterization and reaction chemistry of lutetium alkylamido LLu(CH2SiMe3)(NHCPh3) (2), L = 2,5-[Ph2P=N(4-iPrC6H4)]2N(C4H2)–, is reported. Complex 2 undergoes cyclometalation of the NHCPh3 ligand at elevated temperatures to produce the orthometalated complex LLu(κ2−N,C-(NHCPh2(C6H4))) (3) which converts to 0.5 equivalents of bis(amido) LLu(NHCPh3)2 (4) upon heating at 80 °C for 24 h. Reaction of complex 2 with 4-dimethylaminopyridine (DMAP) does not promote alkane elimination nor imido formation. A kinetic analysis of the thermal decomposition of complex 2, supported by deuterium labelling studies and computational analysis (PBE0/def2-TZVP/SDD(Lu)), indicate direct Csp…

Alkanechemistry.chemical_classificationC h bond010405 organic chemistryLigandStereochemistryOrganic ChemistryThermal decompositionchemistry.chemical_element010402 general chemistry01 natural sciencesBiochemistryLutetium3. Good health0104 chemical scienceslutetiumInorganic ChemistryDecomposition pathwaychemistryDeuteriumIntramolecular forceMaterials Chemistrycoordination complexesPhysical and Theoretical Chemistryta116Journal of Organometallic Chemistry
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New chiral α-aminophosphine oxides and sulfides: an unprecedented rhodium-catalyzed ligand epimerization

2001

International audience; New chiral α-aminophosphine oxide N,P(O) and sulfide N,P(S) ligands have been prepared in one-pot syntheses by addition of Ph2PH to (S)-PhCH[double bond, length half m-dash]NCH(Ph)CH3, followed by oxidation with O2 or S8. Crystallization from cold methanol leads to the isolation of an enantiomerically pure single N,P(O) diastereomer and to a 1 : 1 mixture of the two N,P(S) diastereomers. The coordination chemistry of these ligands with [RhCl(COD)]2 and [RhCl(CO)2]2 has been investigated under argon and syngas. At high temperatures, a P–C oxidative addition of the N,P(O) ligand followed by imine elimination leads to several hydrido rhodium species. The complexes conta…

AminophosphinesIminechemistry.chemical_element010402 general chemistry01 natural sciencesMedicinal chemistryCatalysisCoordination complexRhodiumCatalysischemistry.chemical_compoundEpimerizationMaterials ChemistryOrganic chemistryRhodium[CHIM.COOR]Chemical Sciences/Coordination chemistrychemistry.chemical_classification010405 organic chemistryLigandPhosphine oxides and sulfidesDiastereomerGeneral ChemistryOxidative addition0104 chemical scienceschemistryHydroformylationHydroformylation
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Structural analysis of copper(I) interaction with amyloid β peptide

2019

Abstract The N-terminal fragment of Aβ (β = beta) peptide is able to bind essential transition metal ions like, copper, zinc and iron. Metal binding usually occurs via the imidazole nitrogens of the three His residues which play a key role in the coordination chemistry. Among all the investigated systems, the interaction between copper and Amyloid β assume a biological relevance because of the interplay between the two copper oxidation states, Cu(II) and Cu(I), and their involvement in redox reactions. Both copper ions share the ability to bind Amyloid β. A huge number of investigations have demonstrated that Cu(II) anchors to the N-terminal amino and His6, His13/14 imidazole groups, while …

AmyloidSilverCoordination spherechemistry.chemical_elementPeptide010402 general chemistrySilver(I)01 natural sciencesBiochemistryRedoxCoordination complexInorganic ChemistryMetalchemistry.chemical_compoundCoordination ComplexesImidazoleHistidineAmino Acid SequenceHistidinechemistry.chemical_classificationAmyloid beta-Peptides010405 organic chemistryChemistryStructureCopperPeptide Fragments0104 chemical sciencesCrystallographyCoordinationvisual_artvisual_art.visual_art_mediumCopper(I)CopperProtein BindingJournal of Inorganic Biochemistry
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Simultaneous endo and exo  Complex Formation of Pyridine[4]arene Dimers with Neutral and Anionic Guests

2017

The formation of complexes between hexafluorophosphate (PF6- ) and tetraisobutyloctahydroxypyridine[4]arene has been thoroughly studied in the gas phase (ESI-QTOF-MS, IM-MS, DFT calculations), in the solid state (X-ray crystallography), and in chloroform solution (1 H, 19 F, and DOSY NMR spectroscopy). In all states of matter, simultaneous endo complexation of solvent molecules and exo complexation of a PF6- anion within a pyridine[4]arene dimer was observed. While similar ternary complexes are often observed in the solid state, this is a unique example of such behavior in the gas phase.

Anion bindingStereochemistryhexafluorophosphateDimeraromatic hydrocarbonsIon mobility mass spectrometrycoordination complex010402 general chemistry01 natural sciencesCatalysischemistry.chemical_compoundHexafluorophosphatePyridineMoleculePyridine[4]arenesAnion bindingta116Chloroformta114Resorcinarenes010405 organic chemistryGeneral ChemistryNuclear magnetic resonance spectroscopy0104 chemical sciencesSolventCrystallographychemistryMolecular recognitionAngewandte Chemie International Edition
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Influence of the anions on the structure and magnetic properties of a series of bis(µ-diphexono)-bridged linear trinuclear copper(II) complexes: an e…

2011

The reaction of H(2)L (N,N'-dimethyl-N,N'-bis(2-hydroxy-3-methoxy-5-methylbenzyl)-ethylenediamine) with different copper salts, in methanol and using a H(2)L/Cu = 2 : 3 molar ratio, led to four new bis(μ-diphenoxo)-bridged Cu(3) complexes of general formula [{Cu(S)(μ-L)}(2)Cu(H(2)O)(2n)]X(2) (S = CH(3)OH, n = 1 and X = BF(4)(-) for (1) or ClO(4)(-) for (2); S = Br(3)(-) anion and n = 1 without any X species for (3); S = H(2)O, n = 0 and X = NO(3)(-) for (4)). The use in the same reaction conditions of 4,4'-bipyridine (4,4'-bipy) as connector led to the chain complex [{Cu(μ-4,4'-bipy)(0.5)(μ-L)}(2)Cu(H(2)O)(2n)](ClO(4))(2)·17H(2)O (5). The structure of the centrosymmetric trinuclear unit in …

AnionsSteric effectsChemistryInorganic chemistryMolecular Conformationchemistry.chemical_elementEthylenediamineModels TheoreticalCrystallography X-RayCopperMagnetic susceptibilityInorganic ChemistryMetalMagneticsCrystallographychemistry.chemical_compoundCoordination Complexesvisual_artOctahedral molecular geometryAtomvisual_art.visual_art_mediumAntiferromagnetismta116CopperDalton Transactions
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