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Том 54, № 10 (2018)

Article

Synthesis of 1-Alkyl-5-amino-1,2,4-triazoles Based on Nucleophilic Substitution and Reduction Reactions

Tolstyakov V.

Аннотация

A series of 1-alkyl-5-amino-1H-1,2,4-triazoles were synthesized starting from 3,5-dibromo-1H- 1,2,4-triazole by alkylation and subsequent nucleophilic substitution of the 5-bromine atom by azido group, reduction of the latter to amino group, and hydrodebromination.

Russian Journal of Organic Chemistry. 2018;54(10):1537-1547
pages 1537-1547 views

Multicomponent Synthesis of 4-Alkyl(Aryl, Hetaryl)-2-alkoxycarbonyl(aroyl, carbamoyl)- 3,6-diamino-5-cyanothieno[2,3-b]pyridines

Dyachenko I., Dyachenko V., Dorovatovskii P., Khrustalev V., Nenajdenko V.

Аннотация

The condensation of malononitrile with hydrogen sulfide and aldehydes in the presence of triethylamine in ethanol at room temperature afforded 4-alkyl(aryl, hetaryl)-2,6-diamino-3,5-dicyano-4H-thiopyrans. Treatment of the latter in situ with alkali in DMF, followed by addition of an alkylating agent, led to the formation of 4-alkyl(aryl, hetaryl)-2-alkoxycarbonyl(aroyl, carbamoyl)-3,6-diamino-5-cyanothieno[2,3-b]- pyridines.

Russian Journal of Organic Chemistry. 2018;54(10):1435-1445
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Quantum Chemical Study of Mechanisms of Organic Reactions: VII. Reaction of Ethane-1,2-dithiol with 1,3-Dichloropropene in the System Hydrazine Hydrate–KOH

Chirkina E., Krivdin L., Levanova E., Korchevin N., Rozentsveig I.

Аннотация

A mechanism has been proposed for the reaction of 1,3-dichloropropene with ethane-1,2-dithiol in the system hydrazine hydrate–potassium hydroxide on the basis of DFT quantum chemical calculations [B3LYP/6-311++G(d,p)]. The proposed mechanism involves several consecutive steps, in particular nucleophilic substitution of chlorine at the sp3-hybridized carbon atom by sulfur, prototropic allylic rearrangement of the monosubstitution product with double bond migration toward the sulfur atom, dithiolane ring closure via nucleophilic attack of the second thiolate group on the carbon atom in the γ-position with respect to the second chlorine atom, and prototropic allylic rearrangement of 2-vinyl-1,3-dithiolane to more stable 2-ethylidene-1,3-dithiolane.

Russian Journal of Organic Chemistry. 2018;54(10):1446-1452
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Quantum Chemical Study of Addition–Elimination Reactions of Dimethyl Carbonate with Methylamine

Samuilov A., Alekbaev D., Samuilov Y.

Аннотация

The mechanisms of noncatalytic and autocatalytic addition–elimination reactions of dimethyl carbonate with methylamine have been studied in terms of wB97XD/6-311++G(df,p), M06/6-311++G(df,p), and PBE0/6-311++G(df,p) quantum chemical methods, and thermodynamic and activation parameters of these reactions have been calculated. The rate-determining stage is the formation of tetrahedral carbon intermediate. The addition–elimination mechanism is preferred over the autocatalytic SN2 mechanism determined by enhanced donor–acceptor and acid–base properties of amine complexes with alcohol associates in comparison to amines.

Russian Journal of Organic Chemistry. 2018;54(10):1453-1462
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Eleuthesides and Their Analogs: XIII. Synthesis of Bicyclo[6.2.1]undecane System from Cyclohex-2-en-1-one

Sharipov B., Davydova A., Valeev F.

Аннотация

A short synthetic route to bicyclo[6.2.1]undec-9-ene-2,6-dione has been developed on the basis of retro-aldol reaction of 7-hydroxytricyclo[6.2.1.02,7]undec-9-en-3-one obtained from the Diels–Alder adducts of 3-tosylcyclohex-2-en-1-one with cyclopentadiene.

Russian Journal of Organic Chemistry. 2018;54(10):1463-1468
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Synthesis and Properties of N-(R-Adamantan-1-ylalkyl)-N′-[3(4)-fluorophenyl]thioureas—Target-Oriented Human Soluble Epoxide Hydrolase (hsEH) Inhibitors

Pitushkin D., Burmistrov V., Butov G.

Аннотация

Reactions of 3(4)-fluorophenyl isothiocyanates with amines of the adamantane series in DMF afforded 86–93% of the corresponding N,N′-disubstituted thioureas that are target-oriented inhibitors of human soluble epoxide hydrolase (hsEH). The effect of isosteric replacement of hydrogen in the aromatic fragment by fluorine and of oxygen in the urea fragment by sulfur on the IC50 value was estimated. The inhibitory activity increases twofold for the 3-fluorophenyl derivatives and ninefold for 4-fluorophenyl analogs.

Russian Journal of Organic Chemistry. 2018;54(10):1469-1474
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Synthesis of Homologs of 1-Isothiocyanatoadamantane

Pitushkin D., Burmistrov V., Butov G.

Аннотация

Amines of the adamantane series reacted with carbon disulfide and di-tert-butyl dicarbonate in the presence of triethylamine and a catalytic amount of 4-(dimethylamino)pyridine to give homologs of 1-isothiocyanatoadamantane in 80–86% yields. Adamantan-2-amine, 1-(adamantan-1-yl)ethanamine, and adamantan- 1-ylmethanamine turned out to be more reactive than adamantan-1-amine; in the latter case, the reaction time was twice as long.

Russian Journal of Organic Chemistry. 2018;54(10):1475-1479
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3,28-Bis-O-polyfluorobenzoylbetulin. Synthesis, Molecular Structure, and Cytotoxicity

Trishin Y., Fedorov A., Lyssenko K., Prokof’eva D., Rudenok Y., Pavlova V.

Аннотация

Treatment of betulin with 2,3,4,5-tetrafluoro- and pentafluorobenzoyl chlorides in triethylamine afforded 3,28-bis-O-polyfluorobenzoylbetulins. According to the X-ray diffraction data, all six-membered rings in the 3,28-bis-O-pentafluorobenzoylbetulin molecule appear in a chair conformation, and the five-membered ring has an envelope conformation with the C17 atom deviating from the plane formed by the other four carbon atoms. Unlike betulin itself, the obtained bis-esters showed no cytotoxic effect on human lung adenocarcinoma cell line A549 and human glioblastoma cell line U251.

Russian Journal of Organic Chemistry. 2018;54(10):1480-1485
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Synthesis of N- and N,O-Acryloyl Derivatives of Piperidineand Piperazine-Substituted Polyfluorinated Chalcones

Soboleva E., Orlova N., Shelkovnikov V.

Аннотация

A series of new monomers have been synthesized on the basis of O- and N-acryloyl derivatives of polyfluorinated chalcones via acylation of 4-hydroxypiperidin-1-yl and piperazin-1-yl substituents introduced in succession into different positions of the perfluorinated benzene rings. Polyfluorinated chalcone containing an epoxy group and acrylamide fragments has been obtained according to an original procedure.

Russian Journal of Organic Chemistry. 2018;54(10):1486-1492
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Synthesis of New Cyclopenta[b]quinoline Derivatives

Kozlov N., Zhikharko Y., Basalaeva L.

Аннотация

A series of new 11-(R-phenyl)-8,9-dihydro-7H-benzo[f]cyclopenta[b]quinolin-10(11H)-ones and 7,14-bis(R-phenyl)-2,3,9,10,11,14-hexahydrocyclopenta[2,3]quinolino[8,7-h]cyclopenta[b]quinoline-1,8(4H,7H)-diones were synthesized by three-component condensation of naphthalen-2-amine or naphthalene- 1,5-diamine with substituted benzaldehydes and cyclopentane-1,3-dione in one step through intermediate formation of unstable arylaminoketoenol.

Russian Journal of Organic Chemistry. 2018;54(10):1493-1497
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Synthesis of Allocolchicine Conjugates with a Cetirizine Analog

Zotov A., Shchegravina E., Fedorov A.

Аннотация

Conjugates of allocolchicine and a cetirizine analog have been synthesized as potential anti-inflammatory and anti-allergic drugs.

Russian Journal of Organic Chemistry. 2018;54(10):1498-1504
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Regioselective Synthesis of 3-[2-(Alkylsulfanyl)ethyl]pyrazoles by Reaction of Alkanethiols with 3-Alkenylpyrazoles

Kobelevskaya V., Popov A., Levkovskaya G., Rudyakova E., Rozentsveig I.

Аннотация

3-Alkenyl-5-chloropyrazoles reacted with alkanethiols on heating to 60°C to afford in good yields 3-[2-(alkylsulfanyl)ethyl]-5-chloropyrazoles as a result of anti-Markovnikov addition to the alkenyl group.

Russian Journal of Organic Chemistry. 2018;54(10):1505-1508
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Synthesis of New Functionally Substituted Aryl- and Hetarylcarbamates Based on Ninhydrin

Velikorodov A., Zukhairaeva A., Chabakova A., Kovalev V.

Аннотация

The condensation of methyl (ethyl) phenylcarbamates with ninhydrin in concentrated sulfuric acid gave dialkyl [1,3-dioxoindan-2,2-diyldi(4,1-phenylene)]biscarbamates. Treatment of the latter with hydrazine hydrate resulted in the transformation of the indandione fragment into phthalazinone. Ninhydrin reacted with methyl (hydroxyphenyl)carbamates in glacial acetic acid to produce dihydroxy derivative of oxotrihydroindeno[ 1,2-b][1]benzofuran possessing a carbamate group. Tandem reaction of ninhydrin with methyl (acetylphenyl) carbamates on heating in boiling glacial acetic acid, followed by addition of hydrazine hydrate in acetonitrile, afforded methyl (5-oxo-5H-indeno[1,2-c]pyridazin-3-yl)phenylcarbamates.

Russian Journal of Organic Chemistry. 2018;54(10):1509-1514
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Hetero-Diels–Alder Reaction of Aroylpyrrolo[1,2-a]quinoxalinetriones with Styrene

Kasatkina S., Stepanova E., Dmitriev M., Maslivets A.

Аннотация

Hetero-Diels–Alder reaction of 3-aroylpyrrolo[1,2-a]quinoxaline-1,2,4(5H)-triones with styrene afforded diastereoisomeric (5R*,6aR*)- and (5S*,6aR*)-3,5-diaryl-5,6-dihydropyrano[4′,3′:2,3]pyrrolo[1,2-a]-quinoxaline-1,2,7(8H)-triones.

Russian Journal of Organic Chemistry. 2018;54(10):1515-1518
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Synthesis of Epimethanetriyloxazoloand Epimethanetriylimidazobenzazocinones and -benzazoninones from syn- and anti-Atropisomers of N-Acyl-N-[2-(cycloalk-2-en-1-yl)-6-methylphenyl]glycines

Aleksandrova L., Fatykhov A., Gataullina A., Kantor E., Gataullin R.

Аннотация

The major product of intramolecular [3 + 2]-cycloaddition of münchnones generated by heating syn- and anti-atropisomers of N-acetyl-N-[2-(cyclopent-2-en-1-yl)-6-methyl-, 2,4-dimethyl-, 2,5-dimethylphenyl)- and N-acetyl-N-[2-(cyclohex-2-en-1-yl)-6-methylphenyl]glycines with acetic anhydride was that formed from the anti isomer. Isomeric glycine derivatives having no methyl group in the ortho position of the aromatic ring gave rise to (1S*,3aR*,4S*,7S*,13S*)-1-methyl- and (1S*,3aR*,4S*,7S*,13S*)-3a-acetyl-1-methyl-4,5,6,7- tetrahydro-1,4,7-epimethanetriyl[1,3]oxazolo[3,4-a][1]benzazocin-3(3aH)-one as the major product. Treatment of 1,11-dimethyl- and 1,9,11-trimethyl-4,5,6,7-tetrahydro-1,4,7-epimethanetriyl[1,3]oxazolo[3,4-a][1]benzazocin- 3(3aH)-ones with methylamine in methanol on heating in a sealed ampule afforded epimethanetriylimidazobenzazocinones, whereas acid-stable compound with a methanocyclopenta[c]quinoline skeleton was formed under similar conditions from the 1,8,11-trimethyl analog.

Russian Journal of Organic Chemistry. 2018;54(10):1519-1530
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Reaction of Imidazoles and Triazoles with 1-(Benzotriazol-1-yl)-2-iodoethanone

Zhilitskaya L., Shagun L., Dorofeev I., Yarosh N., Larina L.

Аннотация

Reactions of 2-methyl-1H-imidazole, 1H-benzimidazole, 4H-1,2,4-triazole, and 1H-benzotriazole with 1-(1H-benzotriazol-1-yl)-2-iodoethan-1-one in the absence of a base gave the corresponding N-mono- and N,N′-disubstituted derivatives. 4H-1,2,4-Triazole-3-thiol reacted with 1-(1H-benzotriazol-1-yl)-2-iodoethan-1- one to afford 1-([1,3]thiazolo[2,3-c][1,2,4]triazol-5-yl)-1H-benzotriazolium triiodide.

Russian Journal of Organic Chemistry. 2018;54(10):1531-1536
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Synthesis of an Acyclic Precursor to Epothilone D Analog. Aldol Condensation of (1R)-1-(1,3-Dithiolan-2-yl)-1-(methoxymethoxy)- 2,2-dimethylpentan-3-one with C6‒C21 and C6‒C9 Aldehyde Segments

Valeev R., Sunagatullina G., Loza V., Miftakhov M.

Аннотация

The synthesis of acyclic precursors to epothilone D analogs has been explored. Optimal conditions have been found for enolization of (1R)-1-(1,3-dithiolan-2-yl)-1-(methoxymethoxy)-2,2-dimethylpentan-3-one and its aldol condensation with C6‒C21 and C6‒C9 aldehydes.

Russian Journal of Organic Chemistry. 2018;54(10):1548-1552
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Basicity of Highly Substituted β-Octaalkyl-meso-aryl- and -meso-thienyl Porphyrins

Klyueva M., Lomova T., Nikitin A.

Аннотация

5-Phenyl-, 5,15-diphenyl-5,15-di(thiophen-2-yl)-, and 5,10,15,20-tetraphenyloctaalkyl-21H,23H-porphyrins in benzene–acetic acid mixtures are moderate bases (pK–0.27 to–2.48). There is no simple correlation between the basicity constants and any electronic or geometric structure parameter of their molecules due to the contributions of three factors to the basicity: distortion of the planar structure in highly substituted macrocycles and their protonated forms, positive charge delocalization over the conjugated bond system, and electronic effects of substituents.

Russian Journal of Organic Chemistry. 2018;54(10):1553-1558
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Short Communications

Synthesis of β-Lactam and Anomalous Minor Products in the (i-Pr)2NEt-Promoted Reaction of N-Chloroglycine Methyl Ester Derivative with Dichloroacetyl Chloride

Valiullina Z., Galeeva A., Selezneva N., Miftakhov M.

Аннотация

Apart from the expected [2 + 2]-cycloaddition product, the reaction of N-chloro-N-(2-methoxy-2-oxoethyl)-β-alanine methyl ester with dichloroacetyl chloride in the presence of ethyl(diisopropyl)amine gave minor N-(1,2-dichloro-2-oxoethyl)-β-alanine methyl ester and (3E)-1,1,1-trichloro-4-(diisopropylamino)- but-3-en-2-one.

Russian Journal of Organic Chemistry. 2018;54(10):1559-1561
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Synthesis of 3-Benzylhexahydropyrrolo[1,2-a]pyrazine-1,4-dione

Gaidukevich V., Rudenkova I., Popova L., Nikolaevich L., Knizhnikov V.

Аннотация

3-Benzylhexahydropyrrolo[1,2-a]pyrazine-1,4-dione [cyclo(Pro-Phe)] was synthesized by cyclization of prolylphenylalanine and phenylalanylproline methyl esters which were prepared from the corresponding Boc-protected amino acids.

Russian Journal of Organic Chemistry. 2018;54(10):1562-1564
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On the Reaction of Malononitrile with Acetylacetone

Kalita E., Kim D.

Аннотация

The reaction of malononitrile with acetylacetone in alkaline medium afforded a mixture of 2-amino-4,6-dimethylbenzene-1,3-dicarbonitrile and 4,6-dimethyl-2-oxo-1,2-dihydropyridine-3-carbonitrile, whereas only the latter was formed in alcoholic medium in the absence of a catalyst. The alkylation of 4,6-dimethyl-2-oxo-1,2-dihydropyridine-3-carbonitrile with allyl bromide gave a mixture of N- and O-allyl derivatives.

Russian Journal of Organic Chemistry. 2018;54(10):1565-1568
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Synthesis of Benzo[4,5]furo[3,2-b]thieno[2,3-d]pyridines —Derivatives of a New Heterocyclic System

Yagodkina-Yakovenko M., Bol’but A., Vovk M.

Аннотация

Methyl 2-(bromomethyl)thiophene-3-carboxylates reacted with substituted 2-hydroxybenzonitriles to give methyl 2-[(2-cyanophenoxy)methyl]thiophene-3-carboxylates which underwent tandem cyclization to benzo[4,5]furo[3,2-b]thieno[2,3-d]pyridin-4(5H)-ones.

Russian Journal of Organic Chemistry. 2018;54(10):1569-1572
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Synthesis of Spiro[1,4-benzothiazine-2,2′-pyrroles] by Reaction of Pyrrolo[1,2-c][4,1]benzoxazepinetriones with 2-Aminobenzenethiol

Maslivets A., Dmitriev M., Maslivets A.

Аннотация

3-Aroylpyrrolo[1,2-c][4,1]benzoxazepine-1,2,4-triones reacted with 2-aminobenzenethiol to give 3′-aroyl-4′-hydroxy-1′-[2-(hydroxymethyl)phenyl]-2H,4H-spiro[1,4-benzothiazine-2,2′-pyrrole]- 2,5′(1′H)-diones.

Russian Journal of Organic Chemistry. 2018;54(10):1573-1575
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A Modified Synthesis of 6-Aryl-3-(6-R-pyridin-2-yl)-1,2,4-triazines

Shabunina O., Starnovskaya E., Shtaits Y., Kopchuk D., Kovalev I., Zyryanov G., Rusinov V., Chupakhin O.

Аннотация

A practical procedure has been proposed for the synthesis of 6-aryl-3-(pyridin-2-yl)-1,2,4-triazines containing various functional groups in the α-position of the pyridine ring by direct heterocyclization of isonitrosoacetophenone hydrazones with 6-substituted pyridine-2-carbaldehydes.

Russian Journal of Organic Chemistry. 2018;54(10):1576-1578
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Synthesis of meta-Carboranyl-(S)-homocysteine Sulfoxide

Gruzdev D., Ustinova V., Levit G., Ol’shevskaya V., Krasnov V.

Аннотация

New (S)-homocysteine derivatives containing a meta-carborane fragment were synthesized. m-Carboranyl-(S)-homocysteine sulfoxide was obtained as a mixture of diastereoisomers. The reduction of the side-chain carboxy group of N-tert-butoxycarbonyl-(S)-aspartic acid α-tert-butyl ester with sodium tetrahydridoborate was not accompanied by racemization.

Russian Journal of Organic Chemistry. 2018;54(10):1579-1582
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Erratum

Erratum to: Aminomethylation of Thiourea with Formaldehyde and Cyclic Amines

Martinovich Y., Ramsh S., Hamoud F., Fundamenskii V., Gurzhii V., Zakharov V., Khrabrova E.

Аннотация

Reference to the funding source is missing in the article:

This study was performed in the framework of the project (no. 10.735.2014/K) and base parts (no. 10.7608.2017/8.9) of state assignment of the Ministry of Education and Science of the Russian Federation in the sphere of research activity.

Russian Journal of Organic Chemistry. 2018;54(10):1583-1583
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