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Redox catalysis has been broadly utilized in electrochemical synthesis due to its kinetic advantages over direct electrolysis. The appropriate choice can avoid electrode passivation, which strongly inhibit the efficient activation of substrates. 220641-87-2, Name is N-Methyltetrahydro-2H-pyran-4-amine, molecular formula is C6H13NO. In a Patent,once mentioned of 220641-87-2, Related Products of 220641-87-2

Tetrazolinonecarboxamides of formula I whereinHet is oxetan-3-yl, thietan-3-yl, tetrahydrofuran-3-yl, furan-3-yl, tetrahydrothiophen-3-yl, thiophen-3-yl, tetrahydro-2H-pyran-3-yl, tetrahydro-2H-thiopyran-3-yl, tetrahydro-2H-pyran-4-yl or tetrahydro-2H-thiopyran-4-yl, in each case with or without substitution;R1 is optionally substituted alkyl, alkenyl, alkynyl, cycloalkyl, cycloalkenyl, phenyl, or 3- to 7-membered heterocyclyl;R2 is hydrogen, alkyl, haloalkyl, alkenyl, haloalkenyl, alkynyl, or is optionally substituted cycloalkyl, cycloalkylalkyl, phenyl, phenylalkyl, 3- to 7-membered heterocyclyl, or 3- to 7-membered heterocyclylalkyl,their preparation and herbicidal compositions comprising them.

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Compounds of formula (I) are disclosed. Compounds according to the invention bind to and are agonists, antagonists or inverse agonists of the CB2 receptor, and are useful for treating inflammation. Those compounds which are agonists are additionally useful for treating pain.

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The invention is directed to certain novel compounds. Specifically, the invention is directed to compounds of formula (I) and salts thereof. The compounds of the invention are inhibitors of PI3-kinase activity.

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The present invention provides radiolabeled compounds useful as radiotracers for quantitative imaging of CH24H in mammals. The compound of the present invention is represented by the formula (I): wherein each symbol is as defined in the specification.

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The reaction rate of a catalyzed reaction is faster than the reaction rate of the uncatalyzed reaction at the same temperature.220641-87-2, Name is N-Methyltetrahydro-2H-pyran-4-amine, molecular formula is C6H13NO. In a Patent,once mentioned of 220641-87-2, Safety of N-Methyltetrahydro-2H-pyran-4-amine

Certain novel N-acylated spiropiperidine derivatives are ligands of the human melanocortin receptor(s) and, in particular, are selective ligands of the human melanocortin-4 receptor (MC-4R). They are therefore useful for the treatment, control, or prevention of diseases and disorders responsive to the modulation of MC-4R, such as obesity, diabetes, nicotine addiction, alcoholism, sexual dysfunction, including erectile dysfunction and female sexual dysfunction.

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Optimization of a water soluble, moderately potent lead series of isoxazole-3-carboxamides was conducted, affording a compound with the requisite balance of potency, solubility and physicochemical properties for in vivo use. Compound 8e was demonstrated to be efficacious in a rat model of inflammatory pain, following oral administration.

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SUBSTITUTED 6-AMINO-NICOTINAMIDES AS KCNQ2/3 MODULATORS

The invention relates to substituted 6 -amino-nicotinamides of general formula (I) to pharmaceutical compositions containing these compounds and also to these compounds for use in the treatment and/or prophylaxis of pain and further diseases and/or disorders.

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Discovery and optimization of a novel spiropyrrolidine inhibitor of beta-secretase (BACE1) through fragment-based drug design

The aspartyl protease beta-secretase, or BACE, has been demonstrated to be a key factor in the proteolytic formation of Abeta-peptide, a major component of plaques in the brains of Alzheimers disease (AD) patients, and inhibition of this enzyme has emerged as a major strategy for pharmacologic intervention in AD. An X-ray-based fragment screen of Pfizers proprietary fragment collection has resulted in the identification of a novel BACE binder featuring spiropyrrolidine framework. Although exhibiting only weak inhibitory activity against the BACE enzyme, the small compound was verified by biophysical and NMR-based methods as a bona fide BACE inhibitor. Subsequent optimization of the lead compound, relying heavily on structure-based drug design and computational prediction of physiochemical properties, resulted in a nearly 1000-fold improvement in potency while maintaining ligand efficiency and properties predictive of good permeability and low P-gp liability.

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Optimisation of a high-throughput screening hit resulted in the discovery of 4-(substituted amino)-1-alkyl-pyrazolo[3,4-b]pyridine-5-carboxamides as potent and selective inhibitors of Phosphodiesterase 4 (PDE4). Herein, we describe early SAR studies around this novel template highlighting preferred substituents and rationalization of SAR through X-ray crystal structures of analogues bound to the PDE4 active site. Pyrazolopyridine 20a was found to be a potent and selective PDE4 inhibitor which also inhibits LPS induced TNF-alpha production from isolated human peripheral blood mononuclear cells and has an encouraging rat PK profile suitable for oral dosing.

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A new and efficient synthesis of 4-[N-methyl-N-(tetrahydropyran-4-yl)aminomethyl]aniline dihydrochloride, a key intermediate for the CCR5 antagonist TAK-779, is described. Reductive alkylation of methylamine with tetrahydro-4H-pyran-4-one followed by alkylation of N-methyl-N-(tetrahydropyran-4-yl)amine with 4-nitrobenzylbromide and reduction of N-(4-nitrobenzyl)-N-(tetrahydropyran-4-yl)amine results in a 78% isolated yield from the starting materials by a scalable method, using only commercially available reagents.

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