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Quinolines pyrrolo quinoline

E rrolo[3,2-i]quinolines synthesis, 4, 260, 517 Pyrrolo[3,2-c]quinolines synthesis, 4, 527 Pyrrolo[3,4-6]quinolines synthesis, 4, 517... [Pg.824]

Such ring system may be classified into three isomeric structures pyrrolo [l,2-a]quinoline, pyrrolo[4,5,l-jy]quinoline and pyrrolo[2,l-y]quinoline (Fig. 4). [Pg.83]

The 1,3-dipolar cycloaddition of dienes 86 with phenacyl derivatives 85 gave the pyrrolo[l,2-a]quinoline 87 regio- and stereoselectively (90DOK1156) (Scheme 15). [Pg.86]

Treatment of 4-arylamino-8-iodoquinoline 268 with propargyl alcohol in presence of iodo(phenyl)bis(triphenylphosphine) palladium and copper (I)iodide afforded 269 which upon catalytic reduction using Linder s catalyst gave 4//-pyrrolo[3,2,l-(/]quinoline 270 (97H2395) (Scheme 48). [Pg.105]

Irradiation of lomefloxacin 271 in dilute neutral aqueous solution (in which it exists as a zwitter ion) in Pyrex-filtered 500 W medium pressure mercury (Helios Italquartz) at 17°C gave pyrrolo[3,2,l-(/ ]quinoline 272 (99JOC5388). Under this condition, reductive defluorination via a radical anion took place. This study is important because of the phototoxicity of the fluorinated compounds which could be used as antibacterials (Scheme 49). [Pg.106]

Phthalimidobutyl)-2,3,4,4u,5,6-hexahydro-l//-pyrazino[l,2-u]quino-line was obtained in the reaction of 2,3,4,4u,5,6-hexahydro-l//-pyrazino[l,2-u]quinoline and A-(4-bromobutyl)phthalimide in boiling MeCN in the presence of K2CO3 (97MIP12). 2,3,4,4u,6,7-He-xahydro-l//-pyrazino[l,2-ujquinolines were N-alkylated with 3-dimethylaminomethyl-l//-pyrrolo[2,3-6]pyridine and a mixture of l//-pyrrolo[2,3-6]pyridine and 37% aqueous H2CO in aqueous AcOH in the presence of NaOAc (96USP5576319). 3-[3-Substituted 2-propen-l-yl]-2,3,4,4u, 5,6-hexahydro-l//-pyrazino[l,2-u]qui-... [Pg.306]

It was known that the K+ -competitive imidazopyridine compound, SCH28080, inhibits acid secretion. Then, many reversible inhibitors were developed. These contain protonatable nitrogens but have a variety of core structures such as imidazopyiidines, piperidinopyr-idines, substituted 4-phenylaminoquinolines, pyrrolo [3,2-c]quinolines, guanidinothiazoles, and 2,4-diamino-pyrimidine derivatives. Several reversible inhibitors have been in clinical trials. [Pg.1032]

Benzo[g]cycl[3.2.2]azines or pyrrolizino[3,4,5- 3]isoquinolines, for example, 366, are similarly obtained by cycloaddition of DMAD to pyrrolo[2,l- ]isoquinolines <1985CPB3038>, and l-aza-benzo[ ]cycl[3.2.2]azines are prepared by cycloaddition of DMAD to imidazo[2,l- ]iso-quinolines <1985H(23)2531> (Scheme 102). In all of the above cases, as with the simpler cyclazines, the ester functions are removable by hydrolysis in aqueous alkali followed by... [Pg.839]

Intermolecular addition of photochemically generated nitrenes and in particular acylnitrenes to alkenes provides a useful and widely applied route to aziridines.385 An analogous intramolecular photoreaction is thought to be involved in the conversion of the o-azidophenylethylfuran 461 into the pyrrolo[l,2-a]quinoline 462 as outlined in Scheme 13,386 and intramolecular addition to an azo group has been observed in the 8-azido-1-arylazonaphthalenes 463.387... [Pg.315]

As dehydrogenases (DH) are widely distributed enzymes, a number of studies have been carried out with these biocatalysts. For example, Willner el al. [20] have used a PQQ-monolayer functionalized gold electrode for the catalytic oxidation of NADH in the presence of Ca2+. In this scheme, the pyrrolo-quinoline quinine co-factor, PQQ, was covalently linked, as before for the GOx system [15, 20, 21], to the Au electrode,... [Pg.423]

C. Anthony, M. Ghosh, and C.C. Blake, The structure and function of methanol dehydrogenase and related quinoproteins containing pyrrolo-quinoline quinone. Biochem. J. 304, 665-674 (1994). [Pg.600]

Full -polarization in diradicals can give rise to zwitterionic products. First examples were studied in detail by Carpenter and coworker who investigated solvent effects on rates and product distribution in Myers-Saito cyclizations.64 Polar solvents and substitution patterns that stabilize either positive or negative charges (or both) favor the zwitterionic products. For example, the presence of a dimethylamino group leads to stabilization of cations and isolation of pyrrolo-quinolines, rather than pyrido-indoles from eneyne-carbodiimides, as reported by Wang and coworkers (Scheme 14).65... [Pg.27]

Other indoles that have been prepared using the Sonogashira coupling and cyclization sequence include 5,7-difluoroindole and 5,6,7-trifluoroindole [219], 4-, 5-, and 7-methoxyindoles and 5-, 6-, and 7-(triisopropylsilyl)oxyindoles [220], the 5,6-dichloroindole SB 242784, a compound in development for the treatment of osteoporosis [221], 5-azaindoles [222], 7-azaindoles [160], 2,2-biindolyls [223,176], 2-octylindole for use in a synthesis of carazostatin [224], chiral indole precursors for syntheses of carbazoquinocins A and D [225], a series of 5,7-disubstituted indoles [226], a pyrrolo[2,3-eJindole [226], an indolo[7,6-g]indole [227], pyrrolo[3,2,l-y]quinolines from 4-arylamino-8-iodoquinolines [228], optically active indol-2-ylarylcarbinols [229], 2-alkynylindoles [176], 7-substituted indoles via the lithiation of the intermediate 2-alkynylaniline derivative [230], and a variety of 2,5,6-trisubstituted indoles [231], This latter study employs tetrabutylammonium fluoride, instead of Cul or alkoxide, to effect the final cyclization of 215 to indoles 216 as summarized here. [Pg.121]

Indolylaminomethylenemalonate (617) was cyclized to pyrrolo[3,2-/i]quinolinecarboxylate (618) in 54% yield by heating in diphenyl ether for 5 min. The dihydro derivative (619, R = H) failed to cyclize under similar conditions, but its 7V-(4-methylphenylsulfonyl) derivative (619, R = 4-MePhS02) gave the expected pyrrolo[3,2-/i]quinoline carboxylate (620) in 44% yield [75JCS(P 1)2409]. [Pg.149]

N-( 1,3-Dioxoisoindol-4-yl)aminomethylenemalonate (623) was cyclized to pyrrolo[3,4-/i]quinoline-3-carboxylate (624) by heating in Dowtherm A (87MI1). [Pg.150]

The thermal cyclization of N-( 1,3-dioxoisoindol-5-yl)aminomethylene-malonate (821) in boiling Dowtherm A gave pyrrolo[3,4-g]quinoline-3-carboxylate (822) (87MII). [Pg.190]

The cyclization of isopropylidene 1-indolinylmethylenemalonates (1202) was carried out in polyphosphoric acid at 100°C to yield pyrrolo[3,2,l-y]quinoline-2-carboxylic acids (1203) [82BEP891046, 82BEP891537 83JAP(K)90511], Further pyrrolo[3,2,l-(/]quinolinecarboxylic acids were prepared similarly, in 82-86% yields [82BEP891046, 82BEP891537, 82JAP(K)2285]. [Pg.257]


See other pages where Quinolines pyrrolo quinoline is mentioned: [Pg.638]    [Pg.823]    [Pg.823]    [Pg.547]    [Pg.93]    [Pg.271]    [Pg.25]    [Pg.71]    [Pg.71]    [Pg.71]    [Pg.83]    [Pg.84]    [Pg.88]    [Pg.96]    [Pg.119]    [Pg.258]    [Pg.132]    [Pg.421]    [Pg.424]    [Pg.426]    [Pg.245]    [Pg.143]    [Pg.165]    [Pg.642]   
See also in sourсe #XX -- [ Pg.448 , Pg.449 , Pg.450 ]




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3- pyrrolo

4- //-Pyrrolo quinoline

4- //-Pyrrolo quinoline

93 pyrrolo quinolines

Pyrrolo quinoline synthesis

Pyrrolo quinoline via intramolecular hydride transfer

Pyrrolo quinoline, synthesis from

Pyrrolo quinoline-5-carboxylates

Pyrrolo-quinoline quinine

Pyrrolo-quinoline quinone

Pyrrolo-quinoline quinone methanol dehydrogenase

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