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3- imidazo pyridin

T. Granier, N. Panday, and A. Vasella, Structure-activity relations of imidazo-pyridine-type inhibitors of P-D-glucosidases, Helv. Chim. Acta, 80 (1997) 979-987. [Pg.289]

Several alkylcobaloximes have been degraded by acetic anhydride in pyridine to an imidazo-pyridine, and a key step in a complicated sequence is the migration of pyridine from cobalt to an activated ligand (Scheme 56).179... [Pg.447]

In 1998, three different research groups discovered a novel multi-component reaction almost simultaneously40. They found (partly by serendipity ) that when using 2-aminopyridines as the amine component in the Ugi four-component reaction (4CR), the formation of imidazo-pyridines was observed. The imidazo-pyridine is the product... [Pg.119]

This reaction appears to be similar to the imidazo-pyridine formation mentioned above, most likely via a [5+1] insertion reaction of the isocyanide into the corresponding hydrazone. This reaction mechanism seems likely since only electron-rich aromatic hydrazines yielded cinnolines. The Ugi 4-CR reaction with phe-nylhydrazine is known and has been reported to give the expected Ugi-type 4-CR product. [Pg.304]

BZl and BZ2 (a2, a 3, and a5) sites. A two-dimensional NMR analysis (409) found that Zolpidem possessed only one family of conformations, in which the acetamide moiety was positioned 2 A above the plane of the imidazo-pyridine ring. This is consistent with the crystal structure of edpidem (399). Saripidem also exists in this conformation, which is presumed to impart BZl affinity. However, saripidem m exist in a second conformation in which the acetamide group is in the plane of the imi-dazopyridine system, and this conformation m confer BZ2 affinity. [Pg.562]

Methoxycarbonylamino-6-methylbenzyloxy)-2-methyl-3-(2-propynyl)-imidazo-[l,2-a]-pyridine has been investigated as an imidazo-pyridine derivative and an orally effective antiulcer agent potentially useful as an inhibitor of ATPase. The title compound has been obtained in... [Pg.119]

Fig. 6.13 Detectors arranged in series. (Reproduced with permission from G. A. Gross and A. Gruter, J. Chromatogr., 592, 271 (1992).) Condition sample, heterocyclic aromatic amines column, 25cmx4.6mm i.d. stationary phase, TSK gel ODS80, 5iam mobile phase, 1 ml min water with 0.01 M triethyla-mine, pH 3.2 or 3.6, and acetonitrile, gradient UV 263 nm and fluorescence detectors. Peaks 1 and 5 = pyrido-imidazoles 2 and 4 = imidazo-chinolines 3, 6, 7, 8 = imidazo-chinoxalines 9, 10, 11, 13, 14 = pyrido-indoles 12 = an imidazo-pyridine. Fig. 6.13 Detectors arranged in series. (Reproduced with permission from G. A. Gross and A. Gruter, J. Chromatogr., 592, 271 (1992).) Condition sample, heterocyclic aromatic amines column, 25cmx4.6mm i.d. stationary phase, TSK gel ODS80, 5iam mobile phase, 1 ml min water with 0.01 M triethyla-mine, pH 3.2 or 3.6, and acetonitrile, gradient UV 263 nm and fluorescence detectors. Peaks 1 and 5 = pyrido-imidazoles 2 and 4 = imidazo-chinolines 3, 6, 7, 8 = imidazo-chinoxalines 9, 10, 11, 13, 14 = pyrido-indoles 12 = an imidazo-pyridine.
Ar = 2,4,6-(/-Pr)3C6H2 SCHEME 84 Pd-catalyzed synthesis of imidazo-pyridines/p)rrazines. [Pg.245]

Reviews have appeared dealing with the synthesis of 6i/-pyrido[4,3- ]-carbazoles, thieno-pyridines, and imidazo-pyridines (and their benzo-analogues) having a bridgehead nitrogen atom. ... [Pg.164]

Palmer AM, Nettekoven U. Preparation of tricyclic imidazo-pyridines by asymmetric ketone hydrogenation in the presence of ruthenium phosphino-oxazoline catalyst. Tetrahedron Asymm. 2007 18(20) 2381-2385. [Pg.953]

This reaction procedure has also been used for the synthesis of oxazolo[3,2-fl]pyridine and imidazo[l,2-fl]pyridine derivatives, and the numerous variations studied, allowing changes of the substituent pattern and the number and position of the nitrogen atoms in the six-membered ring, are described in Chapters 4.10 and 4.29. [Pg.121]

Imidazo[l,2-n]pyridine, 8-amino-synthesis, 5, 631 Imidazo[l,2-n]pyridine, 3-aryl-synthesis, 5, 631-632 Imidazo[l,2-n]pyridine, 3-bromo-synthesis, 5, 631... [Pg.661]

Imidazo[l,2-n]pyridine, 5-methyl-2-methylthio-3-substituted synthesis, 5, 632... [Pg.661]

Imidazo[4,5-6]pyridine, 5-acetamido-7-chloro-3-jS-D-ribofuranosyl-N-benzylation, 5, 619... [Pg.661]

Imidazo[4,5-6]pyridine, 7-amino-4-(tri-0-benzoyl-jS-D-ribofuranosyl)-synthesis, 5, 615... [Pg.661]


See other pages where 3- imidazo pyridin is mentioned: [Pg.119]    [Pg.496]    [Pg.179]    [Pg.226]    [Pg.318]    [Pg.119]    [Pg.179]    [Pg.226]    [Pg.318]    [Pg.232]    [Pg.335]    [Pg.253]    [Pg.335]    [Pg.252]    [Pg.166]    [Pg.661]    [Pg.661]    [Pg.661]    [Pg.661]    [Pg.661]    [Pg.661]    [Pg.661]    [Pg.661]    [Pg.661]    [Pg.661]    [Pg.661]   
See also in sourсe #XX -- [ Pg.237 ]




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1.3- Dihydro-2/7-imidazo pyridine-2-thiones

2- -imidazo pyridine, activity

2- imidazo pyridines, preparation

2-Amino-1 -methyl-6-imidazo pyridine

2-amino-1 -methyl-6-phenyl-imidazo pyridine

3- amino-imidazo pyridines

3-Substituted 2-amino-imidazo pyridine

4- Amino-1 //-imidazo pyridine 1 - -2chloroethanone

6-Bromo-2- imidazo pyridine

Heteroaromatic imidazo pyridine

Heterocyclics imidazo pyridines

Imidazo pyridin-4-thione

Imidazo pyridine 4-oxide, nitration

Imidazo pyridine basicity

Imidazo pyridine derivatives

Imidazo pyridine nitration

Imidazo pyridine ring

Imidazo pyridine ring synthesis

Imidazo pyridine skeleton

Imidazo pyridine, alkylation

Imidazo pyridine, dimethyl

Imidazo pyridine, formation

Imidazo pyridine, reaction with

Imidazo pyridine, synthesis

Imidazo pyridine, synthesis from

Imidazo pyridine, tautomerism

Imidazo pyridine-3-carbaldehydes

Imidazo pyridine-5-ones

Imidazo pyridine-thione

Imidazo pyridine. base-catalyzed

Imidazo pyridines

Imidazo pyridines 1,2,4-oxadiazoles

Imidazo pyridines 2,3-dihydro

Imidazo pyridines 4,5,6,7-tetrahydro

Imidazo pyridines benzoylation

Imidazo pyridines bromination

Imidazo pyridines electrophilic substitution

Imidazo pyridines hydrogen-exchange

Imidazo pyridines lithiation

Imidazo pyridines, direct arylations

Imidazo pyridines, hydroxylation

Imidazo- pyridines, substituted

Imidazo-pyridines, halogenation

Pyridine imidazo pyridines formation

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