Search results for "stereochemistry"

showing 10 items of 4831 documents

Synthesis of Protected Enantiopure Erythrulose Derivatives

1996

D- and l-Erythrulose derivatives 2–6 bearing protective O-silyl and O-benzyl groups in various positions were synthesized in enantiopure form from l-ascorbic acid, D-isoascorbic acid, and D-glucose.

chemistry.chemical_classificationchemistry.chemical_compoundEnantiopure drugChemistryStereochemistryOrganic ChemistryMonosaccharideErythruloseGeneral ChemistryPhysical and Theoretical ChemistryLiebigs Annalen
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Infiuence of Foreign Compounds on Formation and Disposition of Reactive Metabolites

2008

Many toxic compounds are unreactive and need biotransformation in order to exert their toxic effects. Several enzymes control the formation or disposition of reactive metabolites. Especially well studied is the group of enzymes responsible for the control of reactive epoxides. Such epoxides may bind spontaneously to DNA, RNA and protein. These alterations of critical cellular macromolecules may disturb the normal biochemistry of the cell and lead to cytotoxic, allergenic, mutagenic and carcinogenic effects. Whether these effects will be manifested depends on the chemical reactivity as well as on other properties (geometry, lipophilicity) of the epoxide in question. Enzymes controlling the c…

chemistry.chemical_classificationchemistry.chemical_compoundEnzymeBiochemistrychemistryBiotransformationStereochemistryMetaboliteDetoxificationMonooxygenaseEpoxide hydrolaseDNACarcinogen
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DRUG-DRUG INTERACTIONS VIA INHIBITION OF MICROSOMAL ENZYMES INVOLVED IN METABOLISM OF EPOXIDES PRODUCED BY MICROSOMAL MONOOXYGENASE

1977

SUMMARY Benzo(a)pyrene was activated by liver microsomes to mutagens detected by the reversion of histidine dependent Salmonella typhimurium TA 1537. Using pure epoxide hydratase or epoxide hydratase inhibitors, comparing animal species with high and low epoxide hydratase activity, or inducing monooxygenase activity, it was shown that epoxide hydratase was a critical enzyme for the inactivation of these mutagens. Many clinically used drugs are metabolized to epoxides. Epoxides are not necessarily mutagenic, but since epoxide hydratase has a very low substrate specificity, such epoxides may competitively inhibit the hydration of mutagenic epoxides, as demonstrated in the present study for th…

chemistry.chemical_classificationchemistry.chemical_compoundEnzymeNon-competitive inhibitionchemistryBiochemistryStereochemistryReversionEpoxidePyreneMetabolismEpoxide hydrolaseHistidine
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ChemInform Abstract: Advances in Indolo[2,3-a]carbazole Chemistry: Design and Synthesis of Protein Kinase C and Topoisomerase I Inhibitors

2010

Indolo[2,3-a]carbazoles, their pyrrolo[3,4-c]anellated variants and structurally closely related bisindolylmaleimides represent a biologically highly interesting class of natural compounds which are potential anticancer agents. According to the ongoing literature new and efficient synthetic methods yield a great variety of these compounds which have been reported in detail. The biological activities and the inhibitory activities against the target enzymes protein kinase C and topoisomerase I are also discussed including structure activity relationships. A molecular binding model of the protein kinase C inhibitors with the target enzyme at the atomic level is presented and supported by X-ray…

chemistry.chemical_classificationchemistry.chemical_compoundEnzymebiologyChemistryStereochemistryCarbazoleTopoisomerasebiology.proteinMolecular bindingGeneral MedicineTopoisomerase-I InhibitorProtein kinase CChemInform
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Synthesis of 1,3- and 2,3-Diglycosylated Indoles as Potential Trisaccharide Mimetics

2012

Diglycosylated heteroaromatics may serve as metabolically stable mimetics of trisaccharides. Herein, the preparation of several 1,3- and 2,3-diglycosylindoles by direct C-glycosylation of monoglycosylated precursors is described.

chemistry.chemical_classificationchemistry.chemical_compoundGlycosylationChemistryStereochemistryOrganic ChemistryGlycosideOrganic chemistryTrisaccharideElectrophilic aromatic substitutionCatalysisSynthesis
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Einführung einer Dreifachbindung in das Bicyclo[6.1.0]nonan-Gerüst

1987

Ausgehend von den auf verschiedenen Wegen zuganglichen Ketonen 1a–c wird die Einfuhrung einer Dreifachbindung in das Bicyclo[6.1.0]nonan-Gerust mit Hilfe der Selenadiazol-Methode untersucht. Dabei Konnen die hochgespannten Bicyclo-[6.1.0]nonine 2a und 2b in reiner Form isoliert werden. Masgeblich fur die Position der Dreifachbindung ist die Regioselektivitat der Ringschlusreaktion bei der Selenadiazolbildung. Introduction of a Triple Bond into the Bicyclo[6.1.0]nonane Skeleton The introduction of a triple bond into the bicyclo[6.1.0]nonane skeleton is investigated by applying the selenadiazole method to the ketones 1a–c, accessible on different pathways. The highly strained bicyclo[6.1.0]no…

chemistry.chemical_classificationchemistry.chemical_compoundKetoneBicyclic moleculeChemistryStereochemistryOrganic ChemistryRegioselectivityPhysical and Theoretical ChemistryNonaneTriple bondLiebigs Annalen der Chemie
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Imidazolsynthesen, Mitt. Synthese α-substituierter 4(5)-Methoxymethyl-5(4)-methyl-imidazole

1977

Methoxymercurierung der α,β-ungesattigten Ketone 1 ergibt α-Acetoxymercuri-β-methoxy-ketone 2, die direkt zu α-Brom-β-methoxy-ketonen 3 bromo- demercuriert werden. Cyclisierung von 3 mit Formamidinacetat in flussigem Ammoniak fuhrt zu α-substituierten 4(5)-Methoxy-methyl-5(4)-methyl-imidazolen 4, deren Struktur 13C-NMR-spektroskopisch gesichert ist. Synthesis of α-Substituted 4(5)-Methoxymethyl-5(4)-methylimidazoles Methoxymercuration of the α,β-unsaturated ketones 1 produces the α-acetoxymercury-β-methoxyketones 2, which are bromo-demercurised without isolation to give the α-bromo-β-methoxyketones 3. Cyclisation of 3 with formamidine acetate in liquid ammonia leads to α-substituted 4(5)-me…

chemistry.chemical_classificationchemistry.chemical_compoundKetoneFormamidine acetatechemistryStereochemistryDrug DiscoveryLiquid ammoniaPharmaceutical ScienceImidazoleMedicinal chemistryArchiv der Pharmazie
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Synthese von Benzo[b]thioxanthenen

1995

Synthesis of Benzo[b]thioxanthenes Benzo[b]thioxanthenes, heterocyclic compounds related to tetracenes and tetracyclines can be obtained by the reaction of 2H-benzo[b]thiete (1) and 1,4-naphthoquinones (3a–g). The primary cycloadducts 4a–g undergo an autoxidation process leading to the quinones 6a–g. The dihydroxy compound 4e shows an additional isomerization by a tetrafold H transfer (4e 5e′). Another preparative route to benzo[b]thioxanthenes makes use of the cycloadditon reaction of 1 and 1,4-epoxynaphthalenes (7a–d). The primary adducts can be transformed to the title compounds by catalytic dehydration processes (8a–d 9a-d). An alternate regioselective opening of the oxygen bridge can b…

chemistry.chemical_classificationchemistry.chemical_compoundKetonechemistryAutoxidationSulfoniumStereochemistryThioxanthenesRegioselectivityGeneral MedicineIsomerizationCatalysisAdductJournal f�r Praktische Chemie/Chemiker-Zeitung
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ChemInform Abstract: Synthesis of Plagiochiline N from Santonin.

2010

This article reports the transformation of O-acetylisophotosantonin, obtained by photochemical rearrangement of santonin, into plagiochiline N, an ent-2,3-secoaromadendrane isolated from Plagiochila ovalifolia. The synthesis was carried out in a sequence involving as the key steps (a) the substitution of the lactone moiety by a gem-dimethylcyclopropane ring through a synthetic intermediate having a C(6)-C(7) double bond and (b) the ozonolysis of the C(2)-C(3) bond followed by cyclization to the dihydropyran ring characteristic of plagiochiline N. Spectroscopic data of the synthetic product fully coincided with the reported data for the natural product.

chemistry.chemical_classificationchemistry.chemical_compoundNatural productOzonolysischemistryDouble bondDihydropyranStereochemistryMoietyGeneral MedicineRing (chemistry)LactoneSantoninChemInform
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WEITERE SELEKTIVITÄTSSTUDIEN AM BEISPIEL EINES ARYLSULFONYLACETYLENS

1984

Abstract With 1-(phenylsulfonyl)propyne-(1) 1 as a model compound, we have investigated the competition reactions with RSH, RNH2 and ROH (R=n-Bu). With RSH and RNH2, the cis-trans-isomeric olefins 2 to 5 are formed. ROH does not react under these conditions. The compounds 6 and 7 are obtained only with ROH as the alcoholate. The reactivity of 1 with nucleophiles is increased in comparison to phenylvinyl sulfone; the selectivity of 1 is, however, decreased. The difference in reactivity of 1 and phenylvinyl sulfone corresponds to ca. 10:1. Mit 1-(Phenylsulfonyl)-propin-(1) 1 als Modellverbindung haben wir die konkurrierenden Umsetzungen mit RSH, RNH2 und ROH (R=n-Bu) studiert. Mit RSH und RNH…

chemistry.chemical_classificationchemistry.chemical_compoundNucleophilic additionchemistryNucleophileStereochemistryEnol etherReactivity (chemistry)Aliphatic compoundSelectivitySulfonePhosphorus and Sulfur and the Related Elements
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