Synthesis of new transition metal complexes of 1H-perimidine derivatives having antimicrobial and anti-inflammatory activities

New series of 1 H -perimidine-2-thiol derivatives and (2-substituted-1 H -perimidin-1-yl)ethane-1,2-dione derivatives and their ligands (C 24 H 14 N 4 S 2 O 2 ) H 2 L 1 and (C 26 H 18 N 4 S 2 O 2 ) H 2 L 2 have been synthesized with transition metal ions, e.g., Copper (II), Silver (I), Cobalt (II) a...

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Published inResearch on chemical intermediates Vol. 38; no. 7; pp. 1527 - 1550
Main Authors Bassyouni, Fatma A., Abu-Bakr, Sherifa M., Hegab, Khaled H., El-Eraky, Wafaa, El Beih, Ahmed A., Rehim, Mohamed E. Abdel
Format Journal Article
LanguageEnglish
Published Dordrecht Springer Netherlands 01.09.2012
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Abstract New series of 1 H -perimidine-2-thiol derivatives and (2-substituted-1 H -perimidin-1-yl)ethane-1,2-dione derivatives and their ligands (C 24 H 14 N 4 S 2 O 2 ) H 2 L 1 and (C 26 H 18 N 4 S 2 O 2 ) H 2 L 2 have been synthesized with transition metal ions, e.g., Copper (II), Silver (I), Cobalt (II) and Ruthenium (III) were prepared and evaluated for their antimicrobial, analgesic and anti-inflammatory activities. The synthesized compounds and their complexes were characterized by elemental analysis, 1 H NMR, IR, MS, molar conductance, thermal gravimetric analysis and electronic spectra. All results revealed that compounds 3 and 13 exhibited high inhibitory effects against some bacterial strains by the disc diffusion method. On the other hand, compounds 2 , 3 , 7 and 12 displayed potent anti-inflammatory activity.
AbstractList New series of 1 H -perimidine-2-thiol derivatives and (2-substituted-1 H -perimidin-1-yl)ethane-1,2-dione derivatives and their ligands (C 24 H 14 N 4 S 2 O 2 ) H 2 L 1 and (C 26 H 18 N 4 S 2 O 2 ) H 2 L 2 have been synthesized with transition metal ions, e.g., Copper (II), Silver (I), Cobalt (II) and Ruthenium (III) were prepared and evaluated for their antimicrobial, analgesic and anti-inflammatory activities. The synthesized compounds and their complexes were characterized by elemental analysis, 1 H NMR, IR, MS, molar conductance, thermal gravimetric analysis and electronic spectra. All results revealed that compounds 3 and 13 exhibited high inhibitory effects against some bacterial strains by the disc diffusion method. On the other hand, compounds 2 , 3 , 7 and 12 displayed potent anti-inflammatory activity.
New series of 1H-perimidine-2-thiol derivatives and (2-substituted-1H-perimidin-1-yl)ethane-1,2-dione derivatives and their ligands (C24H14N4S2O2) H2L1 and (C26H18N4S2O2) H2L2 have been synthesized with transition metal ions, e.g., Copper (II), Silver (I), Cobalt (II) and Ruthenium (III) were prepared and evaluated for their antimicrobial, analgesic and anti-inflammatory activities. The synthesized compounds and their complexes were characterized by elemental analysis, H-1 NMR, IR, MS, molar conductance, thermal gravimetric analysis and electronic spectra. All results revealed that compounds 3 and 13 exhibited high inhibitory effects against some bacterial strains by the disc diffusion method. On the other hand, compounds 2, 3, 7 and 12 displayed potent anti-inflammatory activity.
Author Rehim, Mohamed E. Abdel
Abu-Bakr, Sherifa M.
Hegab, Khaled H.
El-Eraky, Wafaa
El Beih, Ahmed A.
Bassyouni, Fatma A.
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Issue 7
Keywords perimidine derivatives
Quinoxaline derivatives
Antiinflammatory activity
Antimicrobial activity
Mercapto-1
Transition metal complexes
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Snippet New series of 1 H -perimidine-2-thiol derivatives and (2-substituted-1 H -perimidin-1-yl)ethane-1,2-dione derivatives and their ligands (C 24 H 14 N 4 S 2 O 2...
New series of 1H-perimidine-2-thiol derivatives and (2-substituted-1H-perimidin-1-yl)ethane-1,2-dione derivatives and their ligands (C24H14N4S2O2) H2L1 and...
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crossref
springer
SourceType Open Access Repository
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StartPage 1527
SubjectTerms Antiinflammatory activity
Antimicrobial activity
Catalysis
Chemistry
Chemistry and Materials Science
Inorganic Chemistry
Mercapto-1H-perimidine derivatives
Physical Chemistry
Quinoxaline derivatives
Transition metal complexes
Title Synthesis of new transition metal complexes of 1H-perimidine derivatives having antimicrobial and anti-inflammatory activities
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