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This invention relates to compounds represented by formula (I) wherein the variables are defined as herein above, which are useful for treating diseases and conditions mediated by the sodium D-glucose co-transporter (SGLT), e.g. diabetes. The invention also provides methods of treating such diseases and conditions, and compositions etc. for their treatment.

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Reference:
Pyridazine – Wikipedia,
Pyridazine | C4H4N828 – PubChem

 

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Two new classes of highly active yet air- and moisture-stable pi-R-allylpalladium complexes containing bulky biaryl- and bipyrazolylphosphines with extremely broad ligand scope have been developed. Neutral pi-allylpalladium complexes incorporated a range of biaryl/bipyrazolylphosphine ligands, while extremely bulky ligands were accommodated by a cationic scaffold. These complexes are easily activated under mild conditions and are efficient for a wide array of challenging C-C and C-X (X = heteroatom) cross-coupling reactions. Their high activity is correlated to their facile activation to a 12-electron-based L-Pd(0) catalyst under commonly employed conditions for cross-coupling reactions, noninhibitory byproduct release upon activation, and suppression of the off-cycle pathway to form dinuclear (mu-allyl)(mu-Cl)Pd2(L)2 species, supported by structural (single crystal X-ray) and kinetic studies. A broad scope of C-C and C-X coupling reactions with low catalyst loadings and short reaction times highlight the versatility and practicality of these catalysts in organic synthesis.

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Reference:
Pyridazine – Wikipedia,
Pyridazine | C4H4N917 – PubChem

 

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The present invention is directed to phenylaminopropanol derivatives of formula I: or a pharmaceutically acceptable salt thereof, compositions containing these derivatives, and methods of their use for the prevention and treatment of conditions ameliorated by monoamine reuptake including, inter alia, vasomotor symptoms (VMS), sexual dysfunction, gastrointestinal and genitourinary disorders, chronic fatigue syndrome, fibromylagia syndrome, nervous system disorders, and combinations thereof, particularly those conditions selected from the group consisting of major depressive disorder, vasomotor symptoms, stress and urge urinary incontinence, fibromyalgia, pain, diabetic neuropathy, and combinations thereof.

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Reference:
Pyridazine – Wikipedia,
Pyridazine | C4H4N836 – PubChem

 

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A highly efficient direct asymmetric three-component Mannich reaction of an N-acylpyrazole, an aldehyde and a primary or secondary amine, was enabled by a rhodium-based Lewis-acid catalyst with metal-centered chirality. Excellent enantioselectivities were achieved for a variety of substrates at a typical catalyst loading of merely 0.5 mol % (23 examples, up to 98 % ee).

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Pyridazine – Wikipedia,
Pyridazine | C4H4N921 – PubChem

 

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Hg cathode-free electrochemical detosylation of N,N-disubstituted p-toluenesulfonamides was successfully carried out by a constant current electrolysis using an undivided cell equipped with a platinum cathode and a magnesium anode in the presence of an arene mediator. The deprotection proceeded efficiently and selectively under neutral and mild conditions with a stoichiometric amount of electricity without the use of an Hg cathode to obtain the corresponding secondary amines in good to excellent yields.

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Reference:
Pyridazine – Wikipedia,
Pyridazine | C4H4N971 – PubChem

 

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A simple and efficient method for the synthesis of highly substituted benzo- and hetero-fused analog of 2, 3-dihydro-6H-oxa-3a-aza-phenalene was developed using 2H-1, 4-benzoxazine and alpha-oxoketene dithio-acetals.

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Pyridazine – Wikipedia,
Pyridazine | C4H4N950 – PubChem

 

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The use of an in situ generated Pd(0) catalyst associated to N,N?-bis(2,6-diisopropylphenyl)dihydroimidazol-2-ylidene (SIPr) as a ligand and t-BuONa as the base for sequential intra- followed by intermolecular aryl animation is described. The method has been applied to the synthesis of N-arylated five-, six- and seven-membered nitrogen heterocycles.

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Pyridazine – Wikipedia,
Pyridazine | C4H4N959 – PubChem

 

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Reported herein is an unprecedented synthesis of C3-fluorinated oxindoles through cross-dehydrogenative coupling of C(sp3)-H and C(sp2)-H bonds from malonate amides. Under the unique and mild electrochemical conditions, the requisite oxidant and base are generated in a continuous fashion, allowing the formation of the base- and heat-sensitive 3-fluorooxindoles in high efficiency with broad substrate scope. The synthetic usefulness of the electrochemical method is further highlighted by its easy scalability and the diverse transformations of the electrolysis product.

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Reference:
Pyridazine – Wikipedia,
Pyridazine | C4H4N984 – PubChem

 

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wherein R1 is hydrogen, lower alkyl, lower alkoxy, lower alkylthio, halogen, nitro, amino or protected amino, R2 is hydroxy, protected hydroxy, halogen, amino or protected amino, R3 is hydrogen or an organic group, R4 R is hydrogen or lower alkyl, R8 is hydrogen or lower alkyl, and –Z– is –O– or a group of the formula: STR2 (in which n is 0, 1 or 2), and pharmaceutically acceptable salts thereof which are useful as a medicament.

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Reference:
Pyridazine – Wikipedia,
Pyridazine | C4H4N872 – PubChem

 

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The mechanism-based risk for hyperkalemia has limited the use of mineralocorticoid receptor antagonists (MRAs) like eplerenone in cardio-renal diseases. Here, we describe the structure and property-driven lead generation and optimization, which resulted in identification of MR modulators (S)-1 and (S)-33. Both compounds were partial MRAs but still demonstrated equally efficacious organ protection as eplerenone after 4 weeks of treatment in uni-nephrectomized rats on high-salt diet and aldosterone infusion. Importantly, and in sharp contrast to eplerenone, this was achieved without substantial changes to the urine Na+/K+ ratio after acute treatment in rat, which predicts a reduced risk for hyperkalemia. This work led to selection of (S)-1 (AZD9977) as the clinical candidate for treating MR-mediated cardio-renal diseases, including chronic kidney disease and heart failure. On the basis of our findings, we propose an empirical model for prediction of compounds with low risk of affecting the urinary Na+/K+ ratio in vivo.

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Referenceï¼?br>Pyridazine – Wikipedia,
Pyridazine | C4H4N928 – PubChem