Heteroaryl Chalcones: Design, Synthesis, X-ray Crystal Structures and Biological Evaluation

Chalcone derivatives have attracted increasing attention due to their numerous pharmacological activities. Changes in their structures have displayed high degree of diversity that has proven to result in a broad spectrum of biological activities. The present study highlights the synthesis of some ha...

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Main Authors: Hoong-Kun Fun, Ching Kheng Quah, Chin Wei Ooi, C. S. Chidan Kumar, Wan-Sin Loh
Format: Article
Language:English
Published: MDPI AG 2013-10-01
Series:Molecules
Subjects:
Online Access:http://www.mdpi.com/1420-3049/18/10/12707
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spelling doaj-52c504ff75a946e09d3d8e61777f24ba2020-11-24T21:35:40ZengMDPI AGMolecules1420-30492013-10-011810127071272410.3390/molecules181012707Heteroaryl Chalcones: Design, Synthesis, X-ray Crystal Structures and Biological EvaluationHoong-Kun FunChing Kheng QuahChin Wei OoiC. S. Chidan KumarWan-Sin LohChalcone derivatives have attracted increasing attention due to their numerous pharmacological activities. Changes in their structures have displayed high degree of diversity that has proven to result in a broad spectrum of biological activities. The present study highlights the synthesis of some halogen substituted chalcones 3(a–i) containing the 5-chlorothiophene moiety, their X-ray crystal structures and the evaluation of possible biological activities such as antibacterial, antifungal and reducing power abilities. The results indicate the tested compounds show a varied range of inhibition values against all the tested microbial strains. Compound 3c with a p-fluoro substituent on the phenyl ring exhibits elevated antimicrobial activity, whereas the compounds 3e and 3f displayed the least antimicrobial activities. The compounds 3d, 3e, 3f and 3i showed good ferric and cupric reducing abilities, and the compounds 3b and 3c showed the weakest reducing power in the series.http://www.mdpi.com/1420-3049/18/10/12707heteroarylantimicrobialreducingsubstituentoverlay
collection DOAJ
language English
format Article
sources DOAJ
author Hoong-Kun Fun
Ching Kheng Quah
Chin Wei Ooi
C. S. Chidan Kumar
Wan-Sin Loh
spellingShingle Hoong-Kun Fun
Ching Kheng Quah
Chin Wei Ooi
C. S. Chidan Kumar
Wan-Sin Loh
Heteroaryl Chalcones: Design, Synthesis, X-ray Crystal Structures and Biological Evaluation
Molecules
heteroaryl
antimicrobial
reducing
substituent
overlay
author_facet Hoong-Kun Fun
Ching Kheng Quah
Chin Wei Ooi
C. S. Chidan Kumar
Wan-Sin Loh
author_sort Hoong-Kun Fun
title Heteroaryl Chalcones: Design, Synthesis, X-ray Crystal Structures and Biological Evaluation
title_short Heteroaryl Chalcones: Design, Synthesis, X-ray Crystal Structures and Biological Evaluation
title_full Heteroaryl Chalcones: Design, Synthesis, X-ray Crystal Structures and Biological Evaluation
title_fullStr Heteroaryl Chalcones: Design, Synthesis, X-ray Crystal Structures and Biological Evaluation
title_full_unstemmed Heteroaryl Chalcones: Design, Synthesis, X-ray Crystal Structures and Biological Evaluation
title_sort heteroaryl chalcones: design, synthesis, x-ray crystal structures and biological evaluation
publisher MDPI AG
series Molecules
issn 1420-3049
publishDate 2013-10-01
description Chalcone derivatives have attracted increasing attention due to their numerous pharmacological activities. Changes in their structures have displayed high degree of diversity that has proven to result in a broad spectrum of biological activities. The present study highlights the synthesis of some halogen substituted chalcones 3(a–i) containing the 5-chlorothiophene moiety, their X-ray crystal structures and the evaluation of possible biological activities such as antibacterial, antifungal and reducing power abilities. The results indicate the tested compounds show a varied range of inhibition values against all the tested microbial strains. Compound 3c with a p-fluoro substituent on the phenyl ring exhibits elevated antimicrobial activity, whereas the compounds 3e and 3f displayed the least antimicrobial activities. The compounds 3d, 3e, 3f and 3i showed good ferric and cupric reducing abilities, and the compounds 3b and 3c showed the weakest reducing power in the series.
topic heteroaryl
antimicrobial
reducing
substituent
overlay
url http://www.mdpi.com/1420-3049/18/10/12707
work_keys_str_mv AT hoongkunfun heteroarylchalconesdesignsynthesisxraycrystalstructuresandbiologicalevaluation
AT chingkhengquah heteroarylchalconesdesignsynthesisxraycrystalstructuresandbiologicalevaluation
AT chinweiooi heteroarylchalconesdesignsynthesisxraycrystalstructuresandbiologicalevaluation
AT cschidankumar heteroarylchalconesdesignsynthesisxraycrystalstructuresandbiologicalevaluation
AT wansinloh heteroarylchalconesdesignsynthesisxraycrystalstructuresandbiologicalevaluation
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