A solid-phase organic synthesis method has been developed for the preparation of trisubstituted pyrimidin-6-one carboxylic acids 12, which allows elaboration to a 3-dimensional combinatorial library. Three substituents are introduced by initial Knoevenagel condensation of an aldehyde and malonate ester resin 7 to give resin bound 1. Cyclization of 1 with an N-substituted amidine 10, oxidation, and cleavage afforded pyrimidinone 12. The initial solid-phase reaction sequence was followed by gel-phase (19)FNMR and direct-cleavage (1)H NMR of intermediate resins to determine the optimal conditions. The scope of the method for library production was determined by investigation of a 3 x 4 pilot library of twelve compounds. Cyclocondensation of N-methylamidines and 7 followed by CAN oxidation gave mixtures of the resin bound pyrimidin-6-one 11 and the regioisomeric pyrimidin-4-one 15, which after cleavage from the resin afforded a nearly 1:1 mixture of pyrimidin-6-one and pyrimidin-4-one carboxylic acids 12 and 16, respectively. The regiochemical assignment was confirmed by ROESY1D and gHMBC NMR experiments. A library was prepared using 8 aldehydes, 3 nitriles, and 4 amines to give a full combinatorial set of 96 pyrimidinones 12. Confirmation of structural identity and purity was carried out by LCMS using coupled ELS detection and by high-throughput flow (1)H NMR.
We evaluated the effects of two thiazolidinediones (TZDs), the potent PPARγ agonist rosiglitazone currently being used to treat diabetes, and a structurally similar experimental compound that is a poor PPARγ agonist, in a non-diabetic, established hypertension model with continuous measurement of blood pressure by telemetry. Hypertension was induced in male Dahl salt-sensitive rats by a three-week pre-treatment with 4% salt before initiation of treatment. Fasting blood samples were taken for analysis of a biomarker panel to assess metabolic, anti-inflammatory and antioxidant activity of the treatments. Both TZDs significantly reduced both systolic and diastolic blood pressure. When used at the maximally effective doses established for metabolic improvement, both compounds produced equivalent reduction in lipids and elevation of adiponectin, yet the poorer PPARγ agonist produced significantly greater reductions in blood pressure. Neither compound had a significant effect on circulating glucose or insulin in this animal model. The data demonstrate that these TZDs lower blood pressure significantly in Dahl rats and that this cardiovascular pharmacology is not directly correlated with the metabolic actions or with the magnitude of PPARγ activation. These data suggest that it may be possible to find insulin-sensitising agents that have beneficial cardiovascular pharmacology with broad applications for disease prevention.
Imidazole glycerol phosphate dehydratase (IGPD) has become an attractive target for herbicide discovery since it is present in plants and not in mammals. Currently no knowledge is available on the 3-D structure of the IGPD active site. Therefore, we used a pharmacophore model based on known inhibitors and 3-D database searches to identify new active compounds. In vitro testing of compounds from the database searches led to the identification of a class of pyrrole aldehydes as novel inhibitors of IGPD.
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Using a combination of solid phase synthesis for the preparation of N-substituted-N-acylglycines 7 followed by solution-phase ring transformation of trifluoromethylacyl munchnone intermediate 8, a library of 200 trisubstituted-5-trifluoromethylketo (TFMK) imidazoles 9 was prepared. In a sublibrary, bromoacetate resin 4 was treated with 5 amines in parallel to give N-substituted glycines 5 followed by acylation with 12 acid chlorides to provide, upon cleavage from the resin, 60 individual N-substituted-N-acylglycines 7. The glycines 7 were converted to munchnones 8 by treatment with trifluoroacetic anhydride followed by reaction with benzamidine to give trisubstituted-5-TFMK-imidazoles 9. The structural content of the library was analyzed using PlateView of the LCMS results, and individual members were isolated by automated preparative LCMS.
A solid phase organic synthesis method has been developed for the preparation of substituted methylene malonamic acids and malonic ester mono acids 5. Two substituents are introduced into the core molecule 5 by preparation of unsymmetrical malonic acid derivatives 2, followed by Knoevenagel condensation with aromatic or aliphatic aldehydes, giving resin-bound 4. Evaluation of the scope of these reactions led to the preparation of a 96-member library from a set of eight amines/alcohols (seven amines and one alcohol) and 11 aldehydes leading to 88 substituted methylene malonamic/malonate mono acids 5 and eight unsymmetrical malonamic/malonate mono acids 3. Structural validation and quantitation for every member of the library was obtained by evaluation of H-1 NMR and HPLC, respectively. The H-1 NMR data were obtained using automated delivery of DMSO solutions of every library member from a 96-deep well microtiter plate to a flow probe-equipped NMR spectrometer. HPLC data were used for determination of the extent of conversion of malonamic/malonate esters 2 to the products 5 by an external standard method. Summary information from the H-1 NMR and HPLC data is viewed as plate diagrams for analysis of the final library.
Accurate mass analysis at high resolution can be used to determine elemental compositions and is often essential for conclusive metabolite identification, Reference standards can play an important role in the success of the analysis. We have discovered that perfluorinated acid anhydride/fluorinated alkylalcohol (PF-anh/F-alc) derivatives of glyphosate and aminomethylphosphonic acid are sensitively analysed by negative-ion electrospray ionization (ESI) and by positive-ion chemical ionization (CI), Based upon these results, PF-anh/F-alc derivatives of amino acids and PF-anh derivatives of primary amines were prepared, greatly expanding our collection of reference standards for accurate mass measurements, Sample ions are not suppressed since the reference standards can be selected based upon a narrow mass range of interest, They are volatile and, due to the degree of fluorination, have accurate masses favourably close to nominal mass, They are adequately soluble in reverse phase high-performance liquid chromatography solvents, making them particularly useful for ESI, Several examples of positive-ion CI and negative-ion electrospray MS accurate mass analyses of metabolites, obtained using the PF-anh/F-alc derivatives, are described. (C) 1997 by John Wiley & Sons, Ltd.
This study demonstrates a useful application of on-line microbore high-performance liquid chromatography (HPLC) fast atom bombardment (FAB) and thermospray (TSP) mass spectrometry techniques for identification of metabolites from the in vitro metabolism of an experimental Monsanto herbicide: 2-chloro-N-(ethoxymethyl-N-[2-methyl-6- (trifluoromethyl)phenyl]acetamide, 'chloroacetanilide'. The microbore HPLC FAB technique on a high-resolution sector mass spectrometer accelerated identification of polar metabolites from the in vitro metabolism study of the herbicide. It provided good chromatographic resolution and excellent FAB sensitivity with strong protonated molecular ions. Scanning high-resolution LC/FAB mass spectrometry also provided molecular formulae for structural elucidation of unknown metabolites. Sample purification and concentration were minimized. Identification of less polar metabolites was carried out using LC/TSP mass spectrometry with a quadrupole mass spectrometer. LC/TSP mass spectrometry provided useful structural information for both polar and less polar metabolites because their spectra showed more fragmentation than FAB spectra. Glutathione conjugation was the major reaction observed during in vitro incubation of the herbicide. Oxidation of the chloroacetanilide by rat liver enzymes was also a significant metabolic reaction. Seven metabolites were identified, of which four were glutathione conjugates.