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1,2,3,4-Tetrahydroquinolines, synthesis from

The antiviral agent virantmycin is an unusual chlorinated tetrahydroquinoline isolated from a strain of Streptomyces (Figure 6.10). Hydrolysis of a prochiral 2,2-disubstituted dimethyl malonate with PLE in DMSO-pH 8 phosphate buffer (1 4) was a key step in a stereodivergent synthesis of this natural product [57]. [Pg.138]

Styryl derivatives of 2-aminofurans, as well as alkenyl compounds, also undergo intramolecular cycloaddition and the alkene function can be introduced by Stille coupling of a suitably functionalised aryl iodide. This approach is illustrated by the tetrahydroquinoline synthesis summarised in Scheme 26 (99JOC3595). The iodo derivative 143 is readily prepared from the carbamate ester 142 (67% yield) and Stille coupling with vinyltributyltin gives the styrene 144 (72% yield). Intramolecular cycloaddition and dehydration is then achieved simply by heating compound 144 in toluene under reflux (24 h) to give the tetrahydroquinoline 145 in 79% yield. [Pg.29]

Homolytic intramolecular amination allows the synthesis of tetrahydroquinoline 28 from the 3-phenyl-propylamine 27 (n = 2). The yield of indoline 30 is lower because the aminium cation radical 29 generated from A-chloro-2-phenethylamine 27 (n = 1) undergoes an easy jff-scission reaction to form the benzyl radical (Scheme 9). [Pg.911]

Polymeric catalysts. A very useful modification of the catalyst is obtained by ligand exchange with a (polyallyl)triflamide, forming polymer-bound scandium triflamide bistriflate. The catalyst has been used in the combinatorial synthesis of a tetrahydroquinoline library from anilines, aldehydes, and alkenes. A related catalyst prepared from ScClj-bHjO and Nafion is effective in several useful synthetic reactions, including allylation, Diels-Alder reaction, and Friedel-Crafts acylation. ... [Pg.301]

FIGURE 11.67 Polysubstituted tetrahydroquinolines library. (From Baudelle, R. et al.. Parallel synthesis of polysubstituted tetrahydroquinolines, Tetrahedron, 54, 4125, 1998.)... [Pg.303]

Reactions of 3- and 4-piperidone-derived enamines with a dienester gave intermediates which could be dehydrogenated to tetrahydroquinolines and tetrahydroisoquinolines (678). The methyl vinyl ketone annelation of pyrrolines was extended to an erythrinan synthesis (679). Perhydrophenan-threnones were obtained from 1-acetylcyclohexene and pyrrolidinocyclo-hexene (680) or alternatively from Birch reduction and cyclization of a 2-pyridyl ethyl ketone intermediate, which was formed by alkylation of an enamine with a 2-vinylpyridine (681). [Pg.373]

Besides the domino Michael/SN processes, domino Michael/Knoevenagel reactions have also been used. Thus, Obrecht, Filippone and Santeusanio employed this type of process for the assembly of highly substituted thiophenes [102] and pyrroles [103]. Marinelli and colleagues have reported on the synthesis of various 2,4-disubstituted quinolines [104] and [l,8]naphthyridines [105] by means of a domino Michael addition/imine cyclization. Related di- and tetrahydroquinolines were prepared by a domino Michael addition/aldol condensation described by the Hamada group [106]. A recent example of a domino Michael/aldol condensation process has been reported by Brase and coworkers [107], by which substituted tetrahydroxan-thenes 2-186 were prepared from salicylic aldehydes 2-184 and cycloenones 2-185 (Scheme 2.43). [Pg.75]

As shown in Scheme 5.23, 1,2,3,4-tetrahydroquinoline derivatives were synthesized using 3-(2-aminophenyl)propanols as starhng materials and catalyzed by the I/K2CO3 system. This catalytic system was also applicable to the synthesis of 2,3,4,5-tetrahydro-l-benzazepine from 4-(2-aminophenyl)butanol. [Pg.126]

Derivatization of functional groups in a natural-product scaffold can also be effectively performed on the solid-phase. An example of this is the synthesis of a small compound collection (27-compounds) based on the tetrahydroquinoline scaffold. A chiral tetrahydroquinoline scaffold was synthesized in solution from 5-hydroxy-2-nitrobenzaldehyde (Scheme 4). The synthesis involved a key asymmetric aminohydroxylation step. This building block was anchored to the solid support with a Wang linker and diversity was introduced by selective deprotection and derivatization of the protected hydroxyl and amino substituents. [Pg.65]

Q Devise a synthesis of l-benzyl-l.2,3.4-tetrahydroquinoline from quinoline. [Pg.49]

A roundabout route is used to prepare tetrahydroquinolines with reduced carbocyclic rings since direct reduction, as noted above, adds hydrogen to the heterocyclic ring. The key reaction in this scheme involves a variant of the Hantzsch pyridine synthesis. Condensation of the imine (37-1) from dihydroresorcinol with ethoxymethylenepropionaldehyde (37-2) can be envisaged as proceeding through... [Pg.453]

Sterospecific synthesis of tetrahydroquinoline compound (31) was achieved from simple starting materials in high yield (Scheme 21) <95JOC(60)2588> <95JOC(60)3993>. [Pg.215]

The enantioselective synthesis of 3-substituted tetrahydroquinolines was achieved with 98% ee starting from o-nitrocinnamyl intermediates and using rhodium-catalyzed asymmetric hydrogenation, with subsequent cyclization yielding the heterocycle (Scheme 10) <20010L2053>. In an analogous fashion, Sharpless epoxidation of similar o-nitrocinnamyl alcohols yields 3-substituted tetrahydroquinolines with 90% ee. [Pg.223]


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1.2.3.4- Tetrahydroquinolines

Tetrahydroquinoline synthesis

Tetrahydroquinolines synthesis

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