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3- -47/-pyrido pyrimidines, alkylation

Pyrido[3,4-d]pyrimidine-2,4-dione synthesis, 3, 215 Pyridopyrimidines, 3, 201 iV-alkylations, 3, 206 biological activity, 3, 260-261 1-electron reductions, 3, 207 IR spectra, 3, 204 mass spectra, 3, 204 MO calculations, 3, 204 NMR, 3, 202, 203 nucleophilic substitution, 3, 213 8-nucleosides synthesis, 3, 206 physical properties, 3, 201-205 protonation, 3, 206 radical reactions, 3, 215 reactions with water, 3, 207 reduced... [Pg.800]

The use of substituted 2-aminonicotinio acids has enabled a series of pyrido[2,3-d]pyrimidines, which have 5-, 6-, and 7-alkyl and aryl substituents, to be obtained. [Pg.152]

The reaction involves an electrophilic attack into the 5-position of the pyrimidine ring and thus only those pyrimidines that are activated toward electrophilic substitution by the presence of electron-donating substituents at the 2- and 4-positions undergo cyclization. 2,4,6-Triaminopyrimidine, 6-aminouracil, 6-amino-2-thiouracil, 4-amino-2,4 dimercaptopyrimidine, 2,4-diaminopyrimidin-6(l/I)-one, and various 4-amino-vV-alkyl and aryl pyriinidones have all been converted into pyrido[2,3-[Pg.160]

V. Acyl acetates. j8-Keto esters have proved useful for the preparation of pyrido[2,3-d]pyrimidin-7(8H)-ones bearing alkyl and aryl... [Pg.164]

Electrophilic substitution at ring nitrogen atoms has been limited to protonation and iV-alkylation of the anion derived from a pyrido-pyrimidinone.i - Thus, the sodium salt of pyrido-[2,3-d]pyrimidine-2,4-(l//,3ir)-dione and dimethylsulfate yield the 1,3-dimethy] derivative (176). [Pg.195]

Perhydropyrido[l,2-a]pyrimidin-2-one was A -alkylated with 1,4-dibro-mobutane to yield a 1-(4-bromobutyl) derivative (94MIP6). 6-Methyl-4-oxo-4/f-],6,7,8,9,9a-hexahydro-4//-pyrido[],2-a]pyrimidine-3-carboxylate 138 was alkylated with alkyl chlorides 139 to give 1-substituted derivatives 140 (97MIP2). [Pg.205]

Reaction of 2-chloromethyl-4//-pyrido[l,2-u]pyrimidine-4-one 162 with various nitronate anions (4 equiv) under phase-transfer conditions with BU4NOH in H2O and CH2CI2 under photo-stimulation gave 2-ethylenic derivatives 164 (01H(55)535). These alkenes 164 were formed by single electron transfer C-alkylation and base-promoted HNO2 elimination from 163. When the ethylenic derivative 164 (R = R ) was unsymmetrical, only the E isomer was isolated. Compound 162 was treated with S-nucleophiles (sodium salt of benzyl mercaptan and benzenesulfinic acid) and the lithium salt of 4-hydroxycoumarin to give compounds 165-167, respectively. [Pg.210]

Reaction of 2-hydroxy-4//-pyrido[l,2-u]pyrimidin-4-ones 168 and 2-chloromethylsaccharins 169 in the presence of a base gave 2-<9-alkylated products 170 (94EUP626378, 95JMC4687, 95USP5378720). From the reaction mixture of 3-chloro derivative 168 (R = H, R = Cl) and... [Pg.211]

The side chain hydroxy group of 3-(2-hydroxyethyl)-2-methyl-9-methoxy-4//-pyrido[l,2-u]pyrimidin-4-one, and that of its 6,7,8,9-tetrahydro derivative was acylated with MeS02Cl in the presence of NEts in CH2CI2 at room temperature (95MIP4, 96MIP2). The hydroxy group of 2-[4-(4-hydro-xybenzoyl)benzyloxy]-3-methyl-4//-pyrido[l, 2-u]-pyrimidin-4-one, its 6-methyl derivative and 2-[4-(4-hydroxybenzoyl)benzylthio]-3-methyl-4//-pyrido[l, 2-u]pyrimidin-4-one was alkylated with 4-(2-chloroethyl)morpholine hydrochloride and 4-picolyl chloride hydrochloride (96EUP733633). [Pg.213]

Mercapto-3-methyl-4//-pyrido[],2-rz]pyrimidin-4-one and its 6,7,8,9-tetrahydro derivative were S-alkylated with 4-substituted benzylbromides (96EUP733633). [Pg.214]

The A-substituted derivatives of 4-oxo-4//-pyrido[l,2-n]pyrimidine-3-carboxamides and -3-acetamides and l,6-dimethyl-4-oxo-1,6,7,8-tetrahy-dro-4//-pyrido[l,2-n]pyrimidine-3-carboxamide were prepared by treatment of the appropriate 3-carboxylic acids and acetic acid, first with an alkyl chloroformate in the presence ofNEt3 in CHCI3 below — 10°C, then with an amine (98ACH515). A-Phenethyl and A-[2-(3,4-dimethoxyphenyl)ethyl] derivatives of 6-methyl-6,7,8,9-tetrahydro-4//-pyrido[l, 2-n]pyrimidine-3-acetamide were obtained in the reaction of 6-methyl-6,7,8,9-tetrahydro-4//-pyrido[l,2-n]pyrimidine-3-acetic acid and phenethylamines in boiling xylene under a H2O separator. Hydrazides of 4-oxo-4//- and 4-oxo-6,7,8,9-tetrahydro-4//-pyrido[l, 2-n]pyrimidine-3-acetic acid were prepared from the appropriate ester with H2NNH2 H2O in EtOH. Heating 4-oxo-4//- and 6-methyl-4-oxo-6,7,8,9-tetrahydro-4//-pyrido[l, 2-n]pyrimidine-3-acetic hydrazides in EtOH in the presence of excess Raney Ni afforded fhe appropriafe 4-oxo-6,7,8,9-fefrahydro-4//-pyrido[l,2-n]pyrimidine-3-acefa-mide. In the case of the 4-oxo-4// derivative, in addition to N-N bond... [Pg.216]

Reaction of 2-(A -alkyl-A -benzylamino)- and 2-[A -(rraM-crotyl)-A -ben-zylamino]-3-formyl-4/7-pyrido[l,2-n]pyrimidin-4-ones (260, R = H, Me) with tosylamine gave compounds 268 via compounds 266 and 267 (96T13097). The results of kinetic studies and MP3 calculations on the 3-formyl derivatives 252, 260 and the imines 262, 263 suggested a concerted nature for azepine-ring formation. [Pg.227]

Heating 4-oxo-4//-pyrido[l, 2-n]pyrimidine-3-diazonium tetrafluorobo-rate and its 8-methyl derivative in alcohol at 60-90 °C for 15 min to 5h gave alkyl 1-(2-pyridyl)- and 1-(4-methyl-2-pyridyl)-l//-1,2,3-triazole-4-carboxylates (00H(53)1793). [Pg.232]

Alkyl 3-(2-pyridylamino)-3-alkoxycarbonylacrylates cyclized into alkyl 4-oxo-4/f-pyrido[l,2-a]pyrimidine-2-carboxylates either spontaneously or by the action of silica gel (00TL5837). [Pg.236]

Reaction of pyridinium-A -(2-pyridyl)amidine (402) and alkyl haloace-tates in the presence of K2CO3 afforded a mixture of 4-oxo-4/f-pyrido[l, 2-u]pyrimidine-2-carboxylates 407 and 2-aminopyridine derivatives 406 through intermediers 403- 05, as depicted in Scheme 15 (00TL5837). Compound 406 could be cyclized on the action of heat or silica gel into 407. The best yield was achieved in the case of ethyl bromoacetate. [Pg.252]

A diastereomeric mixture of l-alkyl-7-(]-alkylperhydropyrido[l,2-u]-pyrimidin-6-yl)-],2,3,4,8,9-hexahydro-9u-pyrido[],2-u]pyrimidines 412 was obtained in the reaction of glutaraldehyde and A-alkyl-1,3-propanediamines in the presence of a drop of AcOH at 0 °C, then at ambient temperature for 13 h (96H(43)2487). [Pg.254]


See other pages where 3- -47/-pyrido pyrimidines, alkylation is mentioned: [Pg.433]    [Pg.205]    [Pg.241]    [Pg.206]    [Pg.246]    [Pg.800]    [Pg.801]    [Pg.801]    [Pg.175]    [Pg.198]    [Pg.195]    [Pg.211]    [Pg.211]    [Pg.212]    [Pg.213]    [Pg.217]    [Pg.244]    [Pg.40]    [Pg.256]    [Pg.98]    [Pg.100]    [Pg.112]    [Pg.169]    [Pg.172]   
See also in sourсe #XX -- [ Pg.63 , Pg.197 ]




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3- -4//-pyrido pyrimidine

Alkylation pyrimidines

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