31860-60-3Relevant articles and documents
2-pyridine substituted urea structural small molecule compounds as well as synthesis and application thereof
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Paragraph 0197; 0695; 0698-0699, (2020/03/03)
The invention relates to 2-pyridine substituted urea structural small molecule compounds as well as synthesis and application thereof. Specifically, the invention discloses the compounds represented by a formula (I) shown in the specification, enantiomers, diastereomers, racemates or a mixture of the compounds, or a pharmaceutically acceptable salt, hydrate and solvate of the compounds, a preparation method of the above materials, and applications of the above materials in preparation of an ASK1 small molecule inhibitor, or medicines for preventing and/or treating diseases related to ASK1, especially liver diseases, lung diseases, cardiovascular diseases, kidney diseases and metabolic diseases.
2-Pyridyl and 3-pyridylzinc bromides: direct preparation and coupling reaction
Kim, Seung-Hoi,Rieke, Reuben D.
scheme or table, p. 3135 - 3146 (2010/06/13)
A facile synthetic approach to the direct preparation of 2-pyridyl and 3-pyridylzinc bromides has been demonstrated using Rieke zinc with 2-bromopyridine and 3-bromopyridine, respectively. A variety of different electrophiles have been coupled with the resulting organozinc reagents to give the corresponding cross-coupling products in moderate to good yields.
N- (HETERO)ARYL, 2- (HETERO)ARYL-SUBSTITUTED ACETAMIDES FOR USE AS WNT SIGNALING MODULATORS
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Page/Page column 59-60, (2010/09/18)
The present invention relates to compounds of formulae 1 and 2 and methods for modulating the Wnt signaling pathway using these compounds, wherein A1, A2, B, Y and Z all represent rings.
Spiro Compounds As NPY Y5 Receptor Antagonists
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Page/Page column 50, (2009/08/18)
The present invention relates to novel compounds of formula (I), or a pharmaceutically acceptable salt thereof, wherein R is an aryl or heteroaryl, which may be substituted by one or more: halogen, C1-C4 alkyl, C1-C4 alkoxy, C1-C4 haloalkyl, C1-C4 haloalkoxy, cyano;Z1 is H, C1-C4 alkyl or F;Z is CH2, CH(C1-C4 alkyl), C(C1-C4 alkyl)2 or a bond;A is a 6-10 membered aryl or heteroaryl, which may be substituted by one or more: halogen, C1-C4 alkyl, C1-C4 alkoxy, C1-C4 haloalkyl, C1-C4 haloalkoxy, cyano; or —C(═O)—X; or —O(CH2)0-1R1;B is hydrogen or is a 5-6 membered heteroaryl, or a 4-6 membered heterocycle, or phenyl, which may be substituted by one or more: halogen, C1-C4 alkyl, C1-C4 alkoxy, C1-C4 haloalkyl, C1-C4 haloalkoxy, hydroxyl, cyano; A and B being linked via any atom;R1 is —(C1-C4)alkyl(C1-C4)alkoxy; or C3-C8 cycloalkyl; or R1 is an aryl or heteroaryl, which may be substituted by one or more: halogen, C1-C4 alkyl, C1-C4 alkoxy, C1-C4 haloalkyl, C1-C4 haloalkoxy, cyano; or R1 is a 4-6 membered heterocycle, which may be substituted by one or more: halogen, C1-C4 alkyl, C1-C4 alkoxy, C1-C4 haloalkyl, C1-C4 haloalkoxy, cyano;X is OR2 or NR3R4;R2 is C1-C4 alkyl;R3 is hydrogen or together with R4 and the nitrogen form a 5-6 saturated membered ring;R4 is C3-C8 cycloalkyl; processes for their preparation, intermediates used in these processes, pharmaceutical compositions containing them and their use in therapy, as NPY Y5 receptor antagonists and as agents for the treatment and/or prophylaxis of eating disorders such as a binge eating disorder.
POLYCYCLIC PYRIDINES AS POTASSIUM ION CHANNEL MODULATORS
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Page/Page column 44, (2010/02/14)
The present invention provides a genus of polycyclic pyridines that are useful as modulators of potassium ion channels. The modulators of the invention are of use in both therapeutic and diagnostic methods.