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A concise synthesis of mono- and polysubstituted and diversely N-function-alized isoindolinones and isoquinolones

A variety of differently substituted and diversely N-(sul-fanyl) hydroxyalkyl functionalized isoindolinones and isoquinolones have been obtained by anionic cyclization of cyclic bromobenzyl or bromophenethylcarbamates and thiocarbamates. Thieme Stuttgart.

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QUINOLINONE PYRIMIDINES COMPOSITIONS AS MUTANT-ISOCITRATE DEHYDROGENASE INHIBITORS

The invention relates to inhibitors of mutant isocitrate dehydrogenase (mt-IDH) proteins with neomorphic activity useful in the treatment of cell-proliferation disorders and cancers, having the Formula: where A, B, W1, W2, W3, and R1-R6 are described herein.

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Imidazolium and Potassium Hydrogen Carbonate Salts as Ecofriendly Organocatalysts for Oxazolidinone Synthesis

Although oxazolidinones are valuable intermediate compounds for industrial applications, no synthetic method is suitable for their production on a large scale owing to the use of reagents/catalysts that are hazardous or toxic to human health or ecotoxic for the environment. In this manuscript, we describe new and efficient catalysts, that is, the nontoxic hydrogen carbonate anion in combination with a potassium or diisobutylimidazolium ([iBu2IM]) countercation, for the conversion of beta-amino alcohols into cyclic oxazolidinones in high yields of 69 to 90 %. Depending on the catalytic conditions, both catalysts could be easily recovered from the crude reaction products and reused several times without a decrease in their catalytic performance. Furthermore, the imidazolium cation is a renewable catalyst, because its preparation requires less than 10 % of carbon fossil sources.

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“Click” synthesis of small molecule probes for activity-based fingerprinting of matrix metalloproteases

By using “Click Chemistry”, we achieved the facile synthesis of various affinity-based hydroxamate probes that enable generation of activity-based fingerprints of a variety of metalloproteases, including matrix metalloproteases (MMPs), in proteomics experiments. The Royal Society of Chemistry 2006.

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Synthesis, spectroscopic characterization, and in vitro antibacterial evaluation of novel functionalized sulfamidocarbonyloxyphosphonates

Several new sulfamidocarbonyloxyphosphonates were prepared in two steps, namely carbamoylation and sulfamoylation, by using chlorosulfonyl isocyanate (CSI), alpha-hydroxyphosphonates, and various amino derivatives and related (primary or secondary amines, beta-amino esters, and oxazolidin-2-ones). All structures were confirmed by 1H, 13C, and 31P NMR spectroscopy, IR spectroscopy, and mass spectroscopy, as well as elemental analysis. Eight compounds were evaluated for their in vitro antibacterial activity against four reference bacteria including Gram-positive Staphylococcus aureus (ATCC 25923), and Gram-negative Escherichia coli (ATCC 25922), Klebsiella pneumonia (ATCC 700603), Pseudomonas aeruginosa (ATCC 27853), in addition to three clinical strains of each studied bacterial species. Compounds 1a?7a and 1b showed significant antibacterial activity compared to sulfamethoxazole/trimethoprim, the reference drug used in this study.

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Chiral holmium complex-catalyzed Diels-Alder reaction of silyloxyvinylindoles: Stereoselective synthesis of hydrocarbazoles

The catalytic and asymmetric cycloaddition between 3-[1-(silyloxy)vinyl] indoles and electron-deficient olefins gave substituted hydrocarbazoles in up to 99% yield and 94% ee. This reaction was catalyzed by a novel chiral holmium(III) complex. Alkylation of the cycloadduct gave a tricyclic compound with four continuous chiral centers, one of which was a quaternary carbon.

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INDOLES

A 1,4-substituted cyclic amine derivative represented by the following formula or a pharmacologically acceptable salt thereof: wherein A, B, C, D, T, Y, and Z each represent a methine or a nitrogen linkage; R1, R2, R3, R4, and R5 each represent a substituent; n represents 0 or an integer of 1 to 3; m represents 0 or an integer of 1 to 6; and p represents an integer of 1 to 3. The compounds have serotonin antagonism. They are therefore clinically useful as medicaments, in particular, for treating, ameliorating, and preventing spastic paralysis. They are also useful as central muscle relaxants for ameliorating myotonia.

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Metal-catalyzed radical-type transformation of unactivated alkyl halides with C-C bond formation under photoinduced conditions

Recent advances in the metal-catalyzed radical-type transformation of unactivated alkyl halides with C-C bond formation under photoinduced conditions are summarized. In general, an alkyl radical is generated as the key intermediate under visible light irradiation from unactivated alkyl halides. Different metal catalysts including Pd, Cu, Mn, Au, and Ir are reported to promote the conversion effectively. Additionally, a strategy by merging photoredox and transition metal catalysis is successfully applied in the cross-electrophile coupling of alkyl halides. During the reaction process, the undesired beta-hydride elimination is suppressed. Usually, a broad reaction scope is observed, including tertiary, secondary, and primary alkyl halides, with good functional group compatibility.

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PROCESS FOR PRODUCING BETA-AMINOKETONE AND CATALYST THEREFOR

A conjugate addition reaction between an alpha,beta-unsaturated ketone compound and a carbamate compound is carried out to synthesize a beta-aminoketone, a salt or a hydrate salt of a transition metal of Groups 7 to 11 of the Periodic Table of Elements being present in the reaction system as the catalyst. The novel method and the catalyst are capable of synthesizing the beta-aminoketone by the Aza-Michael reaction with high yield and efficiency.

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Synthesis and ESI-MS/MS fragmentation study of two new isomeric oxazolidin-2-one derivatives

Two new isomeric oxazolidin-2-one derivatives have been synthesized through reaction of (E)-3-styrylquinoxalin-2-one with bis-dichloroethylamine hydrochloride in presence of potassium carbonate. The structures of the formed products were established by NMR and mass spectroscopy. The fragmentation patterns of the two novel synthesized oxazolidin-2-ones (1, 2), possessing the same backbone structure, were investigated using electrospray ionization mass spectrometry (ESI-MS) and tandem mass spectrometry (MS/MS) techniques. A simple methodology, based on the use of ESI (positive ion mode) and by increasing the declustering potential in the atmospheric pressure/vacuum interface, collision induced dissociation (CID), was used to enhance the formation of the fragment ions. In general, the novel synthetic oxazolidin-2-one derivatives afforded, in the gas phase, protonated molecules leading to the confirmation of the molecular masses and chemical structures of the studied compounds. The breakdown routes of the protonated molecules were rationalized by conducting low-energy collision CID-MS/MS analyses (product ion scans) using. The structural similarity between the two studied oxazolidin-2-ones explains the similarity observed in their CID-MS/MS spectra and their fragmentation pathways. ESI-MS/MS recorded with increased collision energy values permits us to observe different product ions and allow us to differentiate the two studied isomers. ESI-MS and CID-MS/MS analyses have thus proven to be a specific and very sensitive method for the structural investigation of the two novel synthesized oxazolidin-2-one derivatives.

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