• Title/Summary/Keyword: 2-Aryl-2-methyl-2

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Synthesis of certain N-Aryl-N'-(2-pyrimidinyl)guanidine derivatives as potential antimicrobial agents

  • Eisa, H.M.;Tayel, M.A.;Yousif, M.Y.;El-Kerdway, M.M.
    • Archives of Pharmacal Research
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    • v.13 no.1
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    • pp.78-81
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    • 1990
  • N-Aryl-N'(4-hydroxy-6-methyl-2-pyrimidinyl)guanidines (IIa-c) were prepared by cyclization of N-arybiguanides (Ia-c) with ethyl acetoacetate. Coupling of compounds (IIa-c) with the appropriate diazotized arylamine gave N-aryl-N'-(5-arylhydrazono-6-methyl-4-oxopyrimidin-2-yl) guanidines (IIIa-f). Whereas, their chlorination with phosphorus oxychloride followed by treatment of N-aryl-N'-(4-Chloro-6-methyl-2-pyrimidinyl)guanidimes (IVac) with the appropriate arylamine afforded the corresponding 4-arylamino derivatives (Vaf). Compounds (IIa-f) were also formed when compounds (1a-c) were treated with ethyl 2-arylhydrazono-3-oxobutyrates. The antimircobial testing of some of the prepared compounds against some pathogenic microorganisms revealed that only two have a marked effect against Escherichia coli.

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Synthesis of 1N-aryl-2-methyl-3-ethoxycarbonyl-pyridino [2,3-f]indole-4,9-dione derivatives (II) (1N-아릴-2-메틸-3-에톡시카르보닐-피리디노 [2,3-f]인돌-4,9-디온 유도체의 합성 (II))

  • Suh, Myung-Eun;Park, Hee-Kyung
    • YAKHAK HOEJI
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    • v.41 no.5
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    • pp.582-587
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    • 1997
  • The 6.7-dichloroquinoline-5,8-dione (I) was reacted with ethyl acetoacetate in the presence of sodium ethoxide to yield 6-(${\alpha}$-acetyl-${\alpha}$-ethoxycarbonyl methyl)-7-chloro-qui noline-5,8-dione(II). When this compound II was reacted with some arylamine (phenyl, p-toluyl, p-fluorophenyl, p-chlorophenyl. p-bromophenyl, p-iodophenyl, p-trifluoromethylphenyl, p-dimethylaminophenyl,indanyl), 1N-aryl-2-methyl-3-ethoxycarbonyl pyridino[2,3-f]-indole-4.9-dione(IIIa-I) were obtained via intramolecular cyclization.

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Synthesis of ($\pm$)-Methyl-(1-aryl-4-pyridin-3-yl-but-3-enyl)-amines

  • Jang, Jin-Hee;Sin, Kwan-Seog;Park, Hae-Il
    • Archives of Pharmacal Research
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    • v.24 no.6
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    • pp.503-507
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    • 2001
  • trans-Metanicotine, a subtype (${\alpha}_4{\beta}_2$)-selective ligand for neuronal nicotinic acetylcholine receptor, is under clinical phase for Alzheimer's disease. An efficient synthetic route for ($\pm$)-methyl-(1-aryl-4-pyridin-3-yl-but-3-enyl)-am ices, derivatives of tracts-metanicotine, was explored. Allylation reaction of aryl aldimines with allylmagnesium bromide in THF gave ($\pm$)-methyl-(1-aryl-but-3-enyl)-amines. Protection of the amines with the Boc group and following Heck reaction of the N-Boc amines with 3-bromopyridine gave ($\pm$)-methyl-(1-aryl-4-pyridin-3-yl-but-3-enyl)-carbamic acid tert-butyl esters. Deprotection of the N-Boc group in aqueous 1 N-HCI solution gave the titled amines in good yields. Thus, trans-metanicotine analogues modified at the ${\alpha}-position$ of the methylamino group with amyl groups were obtained in 5 steps.

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Synthesis of 2-Aryl-5-benzoxazolepropionic Acid Derivatives as Antiinflammatory Agent (항염증제로서 2-아릴-5-벤즈옥사졸프로피온산 유도체의 합성)

  • Choi, Hong-Dae;Kowak, Yong-Sil;Geum, Dek-Hyun;Son, Byeng-Wha
    • YAKHAK HOEJI
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    • v.38 no.5
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    • pp.504-510
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    • 1994
  • A facile synthesis of 2-aryl-5-benzoxazolepropionic acid derivatives(1 0a-d), which are potent antiinflammatory agent, is reported. Methyl ${\alpha}$-(p-hydroxyphenyl)propionate(5) was prepared from Friedel-Crafts reaction of isopropoxy benzene with methyl ${\alpha}$-chloro-${\alpha}$-(methylthio) acetate(1), followed by desulfurization, methylation and clevage of ether bond. Compounds(10a-d) were made from(5) by a sequence of nitration, reduction, formation of benzoxazole ring, and hydrolysis in good yields, respectively.

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Synthesis and Antifungal Activities of Some Aryl (3-Methyl-Benzofuran-2-yl) Ketoximes

  • Benkli, Kadriye;Gundogdu-Karaburun, Nalan;Karaburun, Ahmet-Cagrl;Ucucu, Umit;Demirayak, Seref;Kiraz, Nuri
    • Archives of Pharmacal Research
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    • v.26 no.3
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    • pp.202-206
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    • 2003
  • In this study, some aryl (3-methyl-benzofuran-2-yl) ketoximes and their ethers and esters were synthesised. The structure elucidation of the compounds was performed by IR, $^1H-NMR$, MASS spectroscopy and elemental analyses. Antifungal activities of the compounds were examined and moderate activity was obtained.

A Study of Antibacterial Activity of Some Novel 8-Methoxy-4-methyl-quinoline Derivatives

  • Singh, Sheoraj;Kumar, Vikas;Kumar, Ashok;Sharma, Shalabh;Dua, Piyush
    • Bulletin of the Korean Chemical Society
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    • v.31 no.12
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    • pp.3605-3610
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    • 2010
  • In the present study, some quinoline derivatives have been synthesized like 8-methoxy-4-methyl-2-amino-(3'-chloro-2'-oxo-4'-substituted aryl-1'-azetidinyl)quinolines 8-12 and 8-methoxy-4-methyl-2-amino-(2'-substituted aryl-4'-oxo-1',3'-thiazolidin-3'-yl) quinolines 13-17 from 8-methoxy-4-methyl-2-(substituted arylidenyliminoamino)-quinolines 3-7. The structural assignments of these compounds were based on spectral (IR, $^1H$-NMR, Mass) and elemental (C, H, N) analysis. Further, these compounds were evaluated for antibacterial activity against various bacterial strains. Three compounds 10, 11 and 16 were found to exhibit potent antibacterial activity as compared to the standard drug amphicillin.

Kinetics and Mechanism of Pyridinolyses of Aryl Methyl and Aryl Propyl Chlorothiophosphates in Acetonitrile

  • Barai, Hasi Rani;Lee, Hai Whang
    • Bulletin of the Korean Chemical Society
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    • v.35 no.2
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    • pp.483-488
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    • 2014
  • The nucleophilic substitution reactions of Y-aryl methyl (8) and Y-aryl propyl (10) chlorothiophosphates with X-pyridines are studied kinetically in acetonitrile at $35.0^{\circ}C$. The Hammett and Bronsted plots with X in the nucleophiles for both substrates exhibit biphasic concave upwards with a break region between X = 3-Me and H. The obtained values of the cross-interaction constants (${\rho}_{XY}$) are negative with 8 while positive with 10 despite the same free energy correlations with X for both substrates. A stepwise mechanism with a rate-limiting bond formation is proposed with 8, whereas a stepwise mechanism with a rate-limiting leaving group departure from the intermediate is proposed with 10 based on the sign of ${\rho}_{XY}$, negative and positive with 8 and 10, respectively. A frontside nucleophilic attack is proposed with strongly basic pyridines based on the considerably great magnitudes of ${\rho}_X$ and ${\beta}_X$ values while a backside attack is proposed with weakly basic pyridines based on the relatively small magnitudes of ${\rho}_X$ and ${\beta}_X$ for both substrates.

Synthesis of 7-Deazahypoxanthine and 7-Deazaadenine Derivatives (7-데아자하이포크산틴과 7-데아자아데닌 유도체의 합성)

  • Sin, Kwan-Seog;Kim, Nam-Ho;Lee, Joo-Heon;Sung, Sun-Young;Pachaly, Peter
    • YAKHAK HOEJI
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    • v.41 no.2
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    • pp.181-186
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    • 1997
  • A series of 7-deazahypoxanthine and 7-deazaadenine derivatives[6,7.8.9.10,13] as purine antagonists was prepared. The pyrrolidine-5-one derivatives[4,11] were treated vith $(C_2H_5)_3OBF_4$ to give 3- aryl-5-ethoxy-2H-3,4-dihydropyrrole[5,12], which were converted to 7-aryl-7,8-dihydro-7(9H)-deazahy-poxanthine[6,7,8,9,10] and 7-phenyl-2-methyl-7,8- dihydro-7(9H)-deazaadenine[13].

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The Impact of o-Toluidinyl Structure of 2-Methyl-4-(2-methylphenyldiazenyl)phenyl picolinamide on the AHR Antagonistic Activity (2-Methyl-4-(phenyldiazenyl)phenyl picolinamide의 o-toluidinyl 구조가 AHR 길항저해 활성에 미치는 영향)

  • Lee, Hyosung
    • Journal of the Korea Convergence Society
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    • v.8 no.1
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    • pp.115-121
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    • 2017
  • AHR is a transcription factor activated by aryl hydrocarbons, regulating the expression of XMEs (xenobiotics Metabolizing Enzymes). Even though the role of AHR in human physiology has been intensively investigated for the past decades, our understandings are still largely limited due to the deficiency of adequate chemical agents. In addition, it has been demonstrated that AHR correlates to pathogeneses for some diseases. Furthermore, emerging data suggest that the study on the AHR may provide a valid therapeutic target. Classical antagonists in current use are reported to be partial agonistic whereas a pure antagonist is demanded. In this study, o-toluidinyl ring structure of 2-methyl-4-(2-methylphenyldiazenyl)phenyl picolinamide has been modified into various structures to optimize the AHR antagonistic activity by means of convergence study of organic synthesis and molecular biology.