Search results for "Triazine"

showing 10 items of 185 documents

Synthesis, X-ray structure, Hirshfeld analysis, and DFT studies of a new Pd(II) complex with an anionic s-triazine NNO donor ligand

2020

A new Pd(II) complex, [Pd(Triaz)Cl], with the hydrazono-s-triazine ligand, 2,4-di-tert-butyl-6-((2-(4-morpholino-6-(phenylamino)-1,3,5-triazin-2-yl)hydrazono)methyl)phenol, was synthesized by the reaction of PdCl2 with the organic ligand (1:1) in acetone under isothermal conditions. The molecular structure of the [Pd(Triaz)Cl] complex was determined using FTIR and 1H NMR spectroscopic techniques, and single-crystal X-ray diffraction. Moreover, using Hirshfeld surface analysis, the percentages of the intermolecular interactions were determined. The obtained values were 60.6%, 11.6%, 8.1%, 3.6%, and 5.0% for the H⋯H, C⋯H, O⋯H, N⋯H, and Cl⋯H interactions, respectively. Among them, the O⋯H, C⋯H…

Pd(II) complexs-triazinehydrazoneNBOHirshfeld surface analysismolekyylit
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Fate of the herbicides glyphosate, glufosinate-ammonium, phenmedipham, ethofumesate and metamitron in two Finnish arable soils.

2006

The fate of five herbicides (glyphosate, glufosinate-ammonium, phenmedipham, ethofumesate and metamitron) was studied in two Finnish sugar beet fields for 26 months. Soil types were sandy loam and clay. Two different herbicide-tolerant sugar beet cultivars and three different herbicide application schedules were used. Meteorological data were collected throughout the study and soil properties were thoroughly analysed. An extensive data set of herbicide residue concentrations in soil was collected. Five different soil depths were sampled. The study was carried out using common Finnish agricultural practices and represents typical sugar beet cultivation conditions in Finland. The overall obse…

Pesticide resistanceChromatography GasGlycinechemistry.chemical_compoundSoil PollutantsChromatography High Pressure LiquidFinlandBenzofuransMesylatesbiologyHerbicidesTriazinesAminobutyratesPesticide ResiduesSoil classificationGeneral MedicinePesticidebiology.organism_classificationKineticsBiodegradation EnvironmentalGlufosinatechemistryAgronomyInsect ScienceLoamGlyphosateSoil waterEnvironmental scienceSugar beetCarbamatesAgronomy and Crop SciencePest management science
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1,2,4-Amino-triazine derivatives as pyruvate dehydrogenase kinase inhibitors: Synthesis and pharmacological evaluation

2023

: Among the different hallmarks of cancer, deregulation of cellular metabolism turned out to be an essential mechanism in promoting cancer resistance and progression. The pyruvate dehydrogenase kinases (PDKs) are well known as key regulators in cells metabolic process and their activity was found to be overexpressed in different metabolic alerted types of cancer, including the high aggressive pancreatic ductal adenocarcinoma (PDAC). To date few PDK inhibitors have been reported, and the different molecules developed are characterized by structural chemical diversity. In an attempt to find novel classes of potential PDK inhibitors, the molecular hybridization approach, which combine two or m…

PharmacologyPDK inhibitors4-Amino-triazines1Organic ChemistryDrug Discovery2124-Amino-triazinesGeneral MedicineKRAS-mutated pancreatic cancerLigand-based homology modelingSettore CHIM/08 - Chimica Farmaceutica124-Amino-triazines; KRAS-mutated pancreatic cancer; Ligand-based homology modeling; PDK inhibitorsEuropean Journal of Medicinal Chemistry
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Candidate target mechanisms of the growth inhibitor cyromazine: Studies of phenylalanine hydroxylase, puparial amino acids, and dihydrofolate reducta…

2000

Cyromazine, an insect growth regulator, affects larval and pupal cuticles in dipterans and some other insects. The mode of action of this aminotriazine is not known yet, though it has been shown not to inhibit the synthesis of chitin and cuticular proteins. Cyromazine may, however, act on some step(s) of sclerotization of the cuticle. In the present study, we have analyzed the key enzyme for the production of sclerotization agents, phenylalanine hydroxylase (PAH), using the enzyme from Drosophila, a cyromazine-sensitive insect. PAH was studied in vitro with cyromazine and three biologically less active derivatives at concentrations ranging from 1 μM to 1 mM. None of the compounds did signif…

Phenylalanine hydroxylasePhysiologyCuticlePhenylalanineBiologyBiochemistrychemistry.chemical_compoundHousefliesDihydrofolate reductaseAnimalsAmino AcidsTyrosineMode of actionchemistry.chemical_classificationTriazinesDipterafungiPupaPhenylalanine HydroxylaseGeneral MedicineCyromazineJuvenile HormonesTetrahydrofolate DehydrogenaseDrosophila melanogasterEnzymechemistryBiochemistryInsect Sciencebiology.proteinArchives of Insect Biochemistry and Physiology
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An immunoassay for terbutryn using direct hapten linkage to a glutaraldehyde network on the polystyrene surface of standard microtiter plates.

2001

2-Aminobutylamino-4-ethylamino-6-isopropylamino-1,3,5-triazine (ABA-atrazine) has been synthesized and used as a coating hapten in an immunoassay with a monoclonal antibody against terbutryn. Coating was achieved by covalently linking ABA-atrazine to a glutaraldehyde polymer network directly bound to the polystyrene surface of a standard 96-well microtiter plate. The assay was carefully optimized. In particular, the coating hapten concentration had a strong effect on the ELISA sensitivity. By including a pre-incubation step a low test midpoint (IC50-value) of 0.130 microg L(-1) was achieved. As far as we are aware this is the most sensitive ELISA for terbutryn yet reported. The coating-hapt…

PolymersSurface PropertiesEnzyme-Linked Immunosorbent Assayengineering.materialBiochemistrySensitivity and Specificitychemistry.chemical_compoundMicrotiter plateCoatingmedicineChromatographymedicine.diagnostic_testHerbicidesTriazinesNetwork onAntibodies MonoclonalchemistryCovalent bondGlutaralImmunoassayCalibrationengineeringPolystyrenesGlutaraldehydePolystyreneHaptenHaptensFresenius' journal of analytical chemistry
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High-performance liquid chromatography of amino acids, peptides and proteins

1990

Abstract The thermodynamic constants, associated with the interaction of three proteins with triazine dye affinity sorbents, have been derived from bath and frontal analysis experiments. In cases where mass-transfer restrictions are very high, calculation of the thermodynamic constants directly from frontal analysis experiments could not be achieved. In such cases, a portion of the adsorbate was always present in the effluent, a situation which has its effect as the split peak phenomenon. With Fractogel-based triazine dye affinity sorbents none of the test proteins applied in frontal analysis were adsorbed. A similar behaviour was observed for a Cellufine sorbent during the adsorption of hu…

SorbentChromatographyLigandChemistryDiffusionKineticsOrganic ChemistryGeneral MedicineHuman serum albuminBiochemistryHigh-performance liquid chromatographyAnalytical Chemistrychemistry.chemical_compoundAdsorptionmedicineParticleLysozymePorositySaturation (chemistry)medicine.drugTriazineJournal of Chromatography A
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CCDC 1583576: Experimental Crystal Structure Determination

2018

Related Article: David Straßburger, Natascha Stergiou, Moritz Urschbach, Hajime Yurugi, Daniel Spitzer, Dieter Schollmeyer, Edgar Schmitt, Pol Besenius|2018|ChemBioChem|19|912|doi:10.1002/cbic.201800114

Space GroupCrystallography22'2''-(135-triazine-246-triyltrisulfanediyl)triacetic acidCrystal SystemCrystal StructureCell ParametersExperimental 3D Coordinates
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CCDC 1955680: Experimental Crystal Structure Determination

2020

Related Article: Christos P. Constantinides, Daniel B. Lawson, Georgia A. Zissimou, Andrey A. Berezin, Aaron Mailman, Maria Manoli, Andreas Kourtellaris, Gregory M. Leitus, Rodolphe Clérac, Heikki M. Tuononen, Panayiotis A. Koutentis|2020|CrystEngComm|22|5453|doi:10.1039/D0CE00789G

Space GroupCrystallography3-phenyl-1-(pyridin-2-yl)-14-dihydro-124-benzotriazine radicalCrystal SystemCrystal StructureCell ParametersExperimental 3D Coordinates
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CCDC 1955684: Experimental Crystal Structure Determination

2020

Related Article: Christos P. Constantinides, Daniel B. Lawson, Georgia A. Zissimou, Andrey A. Berezin, Aaron Mailman, Maria Manoli, Andreas Kourtellaris, Gregory M. Leitus, Rodolphe Clérac, Heikki M. Tuononen, Panayiotis A. Koutentis|2020|CrystEngComm|22|5453|doi:10.1039/D0CE00789G

Space GroupCrystallography3-phenyl-1-(pyridin-2-yl)-14-dihydro-124-benzotriazine radicalCrystal SystemCrystal StructureCell ParametersExperimental 3D Coordinates
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CCDC 1492552: Experimental Crystal Structure Determination

2018

Related Article: T.E. Gorelik, J. van de Streek, H. Meier, L. Andernach, T. Opatz|2018|Acta Crystallogr.,Sect.B:Struct.Sci.,Cryst.Eng. and Mat.|74|287|doi:10.1107/S2052520618006686

Space GroupCrystallography44'4''-[135-triazine-246-triyltris(ethene-21-diyl)]tris(NN-dimethylaniline)Crystal SystemCrystal StructureCell ParametersExperimental 3D Coordinates
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