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The invention relates to compounds that are azaadamantane derivatives, particularly ether- or amine-substituted azaadamantane derivatives and salts and prodrugs thereof, compositions comprising such compounds, methods of using such compounds and compositions, processes for preparing such compounds, and intermediates obtained during such processes.

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Pyridazine – Wikipedia,
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Disclosed herein are octahydropyrrolo[3,4-b]pyrrole compounds, which may be useful as antagonists of the muscarinic acetylcholine receptor M4 (mAChR M4). Also disclosed herein are methods of making the compounds, pharmaceutical compositions comprising the compounds, and methods of treating disorders using the compounds and compositions.

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A new series of 3-allylseleno-6-alkylsulfonylpyridazines and 3-allylseleno-6-alkylsulfinylpyridazines were synthesized from 3,6-dichloropyridazine for anticancer agent development. The inhibitory effects of 3-allylseleno-6-alkylsulfonylpyridazines on human cancer cell lines were investigated. The synthesis involved thiolation, oxidation, selenylation, and Se-allylation of alkylthiols. That is, sodium methanethiolate, ethanethiol, propanethiol, butanethiol, pentanethiol, and hexanethiol were inserted into the 6-position of the pyridazine nucleus. These new synthetic compounds exhibited antiproliferative activity against human breast cancer (MCF-7), hepatocarcinoma (Hep3B), and human colon carcinoma (RKO) cells in CCK-8 assays, and are potential candidates for cancer chemotherapy.

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Provided herein are novel substituted bicyclic aza-heterocycle sirtuin-modulating compotmds and methods of use thereof. The sirtuin-modulating compounds may be used for increasing the lifespan of a cell, and treating and/or preventing a wide variety of diseases and disorders including, for example, diseases or disorders related to aging or stress, diabetes, obesity, neurodegenerative diseases, cardiovascular disease, blood clotting disorders, inflammation, cancer, and/or flushing as well as diseases or disorders that would benefit from increased mitochondrial activity. Also provided are compositions comprising a sirtuin- modulating compound in combination with another therapeutic agent

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The present invention features compounds useful in the treatment of neurological disorders. The compounds of the invention, alone or in combination with other pharmaceutically active agents, can be used for treating or preventing neurological disorders.

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Compounds 1-3 were obtained in the reaction of 3,6-dichloro-pyridazines with phenylacetonitriles in the biphasic system – DMSO/50% NaOH. The chlorine atom was replaced with cycloalkylamino (4-13) and hydrazinyl (23, 24) moiety. These last compounds were condensed with aldehydes (25-34). Pyridazynylphenylacetonitriles were converted into amides 14-18 and thioamides 19-22. In compounds 2, 3 the chlorine atom was replaced with thiophenyl (37, 38) and in compound 1 with thioethyl and thiophenyl (35, 36) functional groups. In the reactions of compounds 1, 2 with ammonium polysulfide thioamides with thiol group (39, 40) and chlorine atom (41, 42) were obtained. Compounds 1-17, 19-43 were screened for antibacterial and fungicidal activities.

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(Chemical Equation Presented) Microwave irradiation promotes the rapid and efficient reaction of a thiophenol and aryl or heteroaryl halide using a copper or palladium catalyst and a range of ligands, depending upon substrate. Of particular utility is the use of copper(I) iodide (5 mol %) and trans-cyclohexane-1,2-diol as ligand under basic conditions and microwave irradiation to give the corresponding sulfide in high yield. This method for C-S bond formation is applied in the four-step synthesis of the clinical candidate VX-745 in 38% overall yield. The inhibitory activity of VX-745 against p38alpha MAPK is confirmed in Werner syndrome dermal fibroblasts at 1.0 muM concentration by immunoblot assay. 2009 American Chemical Society.

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Described herein are compounds, including pharmaceutically acceptable salts thereof, methods of making such compounds, pharmaceutical compositions comprising such compounds, and methods of using such compounds to treat, prevent or diagnose blood-based diseases, disorders or conditions.

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Inhibition of cholinesterases is an effective method to curb Alzheimer?s disease, a progressive and fatal neurological disorder. A series of 6-substituted-3(2H)-pyridazinone-2-acetyl-2-(p-substituted benzalhidrazone) derivatives were designed, synthesized, and their inhibitory effects on acetylcholinesterase and butyrylcholinesterase were evaluated in pursuit of potent dual inhibitors. We obtained our compounds by the reaction of various substituted/nonsubstituted benzaldehydes with 6-[4-(3,4-dichlorophenyl)piperazine-1-yl]-3(2H)-pyridazinone-2-yl acetohydrazide and determined their anticholinesterase activities according to the Ellman?s method. 5f and 5i showed 75.52 and 71.72% acetylcholinesterase inhibition at 100 mug/ml, respectively. 5h and 5f, on the other hand, were the best butyrylcholinesterase inhibitors with 67.16 and 62.03% inhibition at the same concentration, respectively. 5f emerged as a potent dual cholinesterase inhibitor. Through molecular docking studies we predicted the inhibition mechanism of 5f for both enzymes in comparison with our previous derivatives, which differ in inhibition potency, and tried to get insights into the factors that affect receptor affinity in molecular level.

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Conjugated oligomers with ethynylpyridazine units have been synthetized by Sonogashira and Suzuki cross-coupling reactions. Some of them present interesting liquid crystals properties investigated by differential scanning calorimetry (DSC) and polarized light microscopy. Some of these oligomers are fluorescent.

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