نتایج جستجو برای: multisubstituted pyrroles

تعداد نتایج: 2001  

Journal: :Organic & biomolecular chemistry 2015
Ramakanth Pagadala Devendar Reddy Kommidi Shravankumar Kankala Suresh Maddila Parvesh Singh Brenda Moodley N A Koorbanally Sreekantha B Jonnalagadda

A one-pot green protocol involving four-components in aqueous medium is developed to synthesize highly-functionalized pyrroles in good yields. Two of the newly synthesized compounds were subjected to in silico analysis on the Pharm Mapper web-server and the human mitogen-activated protein kinase1 (MEK1) enzyme was identified as a potential target protein for these compounds. For target validati...

Journal: :Environmental Health Perspectives 1996
C Bleasdale G Kennedy J O MacGregor J Nieschalk K Pearce W P Watson B T Golding

(Z,Z)-Muconaldehyde reacted with primary amines to give N-substituted-2(2'-oxoethyl)-pyrroles, which were reduced to N-substituted-2-(2'-hydroxyethyl)-pyrroles by sodium borohydride. The pyrrole-forming reaction is exhibited by valine and its methyl ester, and is being developed with terminal valine in hemoglobin as a means of dose monitoring (Z,Z)-muconaldehyde, a putative metabolite of benzen...

Journal: :Proceedings of the National Academy of Sciences of the United States of America 2009
Pablo Ballester Guzmán Gil-Ramírez

Calix[4]pyrroles having extended aromatic cavities have been functionalized with 4 ureas in the para position of their meso phenyl substituents. This elaboration of the upper rim was completed in 2 synthetic steps starting from the alpha,alpha,alpha,alpha-tetranitro isomer of the calix[4]pyrrole obtained in the acid catalyzed condensation of p-nitrophenyl methyl ketone and pyrrole. In dichlorom...

Journal: :Beilstein Journal of Organic Chemistry 2008
Brendon S Gourlay John H Ryan Jason A Smith

BACKGROUND The Birch reduction of electron rich pyrroles does not occur readily. However, dissolving metal reduction with zinc under acidic conditions gives 3-pyrrolines (2,5-dihydropyrroles) in reasonable yield. This dissolving metal reduction was first reported by Knorr and Rabe in 1901 but since then has only been reported for the reduction of electron rich pyrroles. RESULTS The partial re...

2012
Matthew G. Fisher Philip A. Gale Jennifer R. Hiscock Michael B. Hursthouse Mark E. Light Franz P. Schmidtchen Christine C. Tong

Calix[4]pyrroles such as meso-octamethylcalix[4]pyrrole 1 have been extensively studied as anion and ion-pair receptors over recent years. Subsequently ‘strapped’ calix[4]pyrroles, pioneered by Lee and Sessler, have been synthesised that contain a single linker between distal meso-positions. These compounds have increased 15 affinity for anions relative to the parent macrocycle. Recently there ...

2015
Mohamed Yacine Ameur Messaoud Ghenia Bentabed-Ababsa Madani Hedidi Aïcha Derdour Floris Chevallier Yury S Halauko Oleg A Ivashkevich Vadim E Matulis Laurent Picot Valérie Thiéry Thierry Roisnel Vincent Dorcet Florence Mongin

The synthesis of N-arylated pyrroles and indoles is documented, as well as their functionalization by deprotonative metallation using the base in situ prepared from LiTMP and ZnCl2·TMEDA (1/3 equiv). With N-phenylpyrrole and -indole, the reactions were carried out in hexane containing TMEDA which regioselectively afforded the 2-iodo derivatives after subsequent iodolysis. With pyrroles and indo...

A sequential process strategy was introduced for the synthesis of 2,3,4,5-tetrasubstituted pyrroles by the formation of benzoin from the corresponding aromatic aldehyde and followed by condensation reaction with 1,3-dicarbonyl compounds and ammonium acetate in the presence of diethylene glycol-bis(3-methylimidazolium) dihydroxide as catalyst in refluxing ethanol. The recycled catalyst could be ...

Journal: :The Journal of organic chemistry 2010
Nalivela Kumara Swamy Arife Yazici Stephen G Pyne

The CuX (X = I, Br, Cl, CN)-mediated cyclization-halogenation and cyclization-cyanation reactions of beta-hydroxyalkynes and o-alkynylphenol and -aniline derivatives give rise to 3-halo- and 3-cyanofuro[3,2-b]pyrroles, 3-iodo-, 3-bromo-, and 3-cyanobenzofurans, and 3-cyanoindoles, respectively.

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