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With guanidine

Another one is the condensation with guanidine giving 2,4,6-trianrinopyrimidine [1004-38-2] (76). [Pg.473]

Sulfaguanidine is prepared by condensation of Ai-acetylsulfanilyl chloride with guanidine ia presence of alkali. The A/ -acetyl group is removed by acid or alkaline hydrolysis. [Pg.469]

The reaction of diacetylene or its monosubstituted homologs with guanidine in the presence of an equimolar amount of sodium ethylate (80°C, EtOH, 14 h) leads to 2-amino-4-alkylpyrimidines (33) (70ZOR1347 71ZOR14). Their structures were proved by comparison of their properties (as well as those of their picrates) with those of authentic samples obtained by independent synthesis. [Pg.168]

In a similar way, 3-amino-1,2,4-triazino[6,5-c]quinoline 4-oxides 127 were synthesized by the reaction of 4-chloro-3-nitroquinoline 128 with guanidine, followed by the cyclization of intermediate arylguanidines under basic conditions (81JHC1537). [Pg.292]

The reaction of 4-methoxy-3-nitropyridines 129 with guanidine under similar conditions results in 3-aminopyrido[3,4-e]-l,2,4-triazine 1-oxides 130 (76MI). [Pg.292]

Cyclocondensation of 3-cyano-2-methylthio-4//-pyrido[l, 2-u]pyrimidin-4-ones and ethyl mercaptoacetate in boiling EtOH in the presence of NaOEt afforded 4//-pyrido[l,2-u]thieno[2,3-r/ pyrimidin-4-ones 210 (00HC571). 2-Methylthio-4-oxo-4//-pyrido[l,2-u]pyrimidine-3-carboxylates 211 and mercaptoacetates afforded tricyclic derivatives 212 (93MIP1). Cyclocondensation of 2-methylthio-4-oxo-4//-pyrido[l, 2-u]pyrimidin-3-car-bonitriles 213 with H2NNH2 H2O and with guanidine HCl afforded tricyclic derivatives 214 and 215, respectively (96FES781). [Pg.220]

Villsmeier reaction on the dimethylacetal of methoxyacetaldehyde (141) with phosgene and dimethyIformamide affords the acrolein derivative, 142. Condensation of this with guanidine gives the pyrimidine, 143. (The enamine can be viewed as a latent aldehyde-the dimethylamino group is probably lost in the course of an addition elimination reaction with one of the guanidine groups.) This pyrimidine serves as starting material for sulfameter (111). ... [Pg.129]

One of the standard methods for construction of the basic heterocyclic ring was elaborated not long after the turn of the century. Thus, condensation of ethyl lactate with guanidine leads to the imine of the desired ring system (47), possibly by a reaction scheme such as that outlined below. Hydrolysis affords the oxazolidinedione (48). Methylation in the presence of base gives 49. [Pg.232]

An early application of this reaction to the preparation of barbiturates starts by the condensation of the ketone, I21, with ethyl cyanoacetate by Knoevenagel condensation. Alkylation of the product (122) with ethyl bromide by means of sodium ethoxide affords 123. Condensation of this intermediate with guanidine in the presence of sodium ethoxide gives the diimino analog of a barbiturate (124). Hydrolysis affords vinbarbital (111). > ... [Pg.271]

Esterification of 136 with p-toluenesulfonyl chloride leads to the tosylate (139). Displacement of the ester with guanidine affords guanoxane (140). This drug, not surprisingly, shows peripheral sympathetic blocking activity and is therefore used in control of hypertension. [Pg.352]

Interposition of a methylene group between the phenyl ring and the heterocycle leads to the benzyldiami nopyrimidines, a class of compounds notable for their antibacterial activity. Condensation of hydrocinnamate 54 with ethyl formate leads to the hydroxymethylene derivative 55. In this case, too, the heterocyclic ring is formed by reaction with guanidine. This sequence probably involves initial addition-elimination to the forniyl carbon to form 56 cyclization in this case involves simple amide formation. Tautomerization then affords the hydroxy derivative 57. This is converted to tetroxoprim (58) by first... [Pg.154]

Rolgamidine (14) is a dihydropyrrole derivative which has antidiarrheal activity It can be synthesized by alkylation of trans 2,5-dimethyl-3 pyrroline (12) with methyl bromoacefate to give 13 An amide-ester exchange reaction with guanidine hydrochloride completes the synthesis of rolgamidine (14) [3]... [Pg.80]

One such compound, bropirimine (112), is described as an agent which has both antineo-plastic and antiviral activity. The first step in the preparation involves formation of the dianion 108 from the half ester of malonic acid by treatment with butyllithium. Acylation of the anion with benzoyl chloride proceeds at the more nucleophilic carbon anion to give 109. This tricarbonyl compound decarboxylates on acidification to give the beta ketoester 110. Condensation with guanidine leads to the pyrimidone 111. Bromination with N-bromosuccinimide gives bropirimine (112) [24]. [Pg.117]

The SnAt reacdon followed by intramolecular cyclizadon provides a useful method for the preparadon of heterocyclic compounds, as summarized in Ref 1 Reaction of Tflnoronitroben-zeneor 1,2-dinittobenzene with guanidine in hor THE followed by treatmenr with r-BnOK gives 3-amino-l,2,4-benzotriazene Toxide in good yield fEq 9 11 ... [Pg.306]

The 5-methyl-5-ethyloxazolidine-2,4-dione may be prepared by reacting methyl ethyl ketone with sodium cyanide and with ammonium thiocyanate followed by desulfurization. This intermediate may also be prepared by condensing a-hydroxy-a-methylbutyramide with ethyl chlorocarbonate or by condensing ethyl a-hydroxy-a-methylbutyrate with urea. Another method described (Traube and Aschar, Ber., 46, 2077-1913) consists in the condensation of ethyl a-hydroxy-a-methylbutyrate with guanidine followed by hydrolysis. [Pg.1162]


See other pages where With guanidine is mentioned: [Pg.1009]    [Pg.460]    [Pg.291]    [Pg.467]    [Pg.469]    [Pg.162]    [Pg.109]    [Pg.112]    [Pg.113]    [Pg.114]    [Pg.115]    [Pg.115]    [Pg.121]    [Pg.152]    [Pg.318]    [Pg.587]    [Pg.766]    [Pg.825]    [Pg.448]    [Pg.296]    [Pg.159]    [Pg.156]    [Pg.157]    [Pg.168]    [Pg.201]    [Pg.291]    [Pg.262]    [Pg.262]    [Pg.263]    [Pg.268]    [Pg.153]    [Pg.155]    [Pg.168]   
See also in sourсe #XX -- [ Pg.126 , Pg.287 ]




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2-Amino-3- pyrazine with guanidine

Acetylacetone, reaction with guanidine

Cinchona Alkaloid Derivatives with a Sulfonamide, Urea, Thiourea, Squaramide, or Guanidine Function

Group Ila metal ion complexes, effect Guanidine, reaction with diacetylene

Guanidination with alkyl

Guanidine hydrochloride, reaction with

Guanidine, compd. with tantalum sulfide

Guanidine, reaction with 1,3-dicarbony

Guanidines reaction with carbodiimides

Sulfonyl with guanidines

With Amidines or Guanidine

With guanidines

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