Synthetic Optimization and Antibacterial Activity of Novel Benzodioxepine-Biphenyl Amide Derivatives.


Journal

Acta chimica Slovenica
ISSN: 1580-3155
Titre abrégé: Acta Chim Slov
Pays: Slovenia
ID NLM: 101247110

Informations de publication

Date de publication:
31 Aug 2024
Historique:
received: 26 04 2024
accepted: 23 07 2024
medline: 26 9 2024
pubmed: 26 9 2024
entrez: 26 9 2024
Statut: epublish

Résumé

The biosynthesis of fatty acids constitutes a critical metabolic pathway in bacterial organisms. Prior investigations have highlighted the synthesis of antimicrobial compounds anchored in the benzodioxepin scaffold, noted for their pronounced antibacterial properties. Leveraging this foundational knowledge, the current research endeavors to meticulously engineer and synthesize a series of eight innovative benzodioxepin amide-biphenyl derivatives. This achievement was realized through the sophisticated optimization of synthetic methodologies. The scope of this study extends to a rigorous evaluation of the antibacterial prowess and biocompatibility of the aforementioned novel derivatives. Notably, Compound E4 emerged as a supremely potent antimicrobial agent. A detailed elucidation of the crystalline architecture of Compound E4 was conducted, alongside a thorough docking study to explore its interactions with the FabH enzyme.

Identifiants

pubmed: 39324322
doi: 10.17344/acsi.2024.8784
doi:

Substances chimiques

Anti-Bacterial Agents 0
Amides 0
Biphenyl Compounds 0
Benzodioxoles 0
biphenyl 2L9GJK6MGN

Types de publication

Journal Article

Langues

eng

Sous-ensembles de citation

IM

Pagination

509-518

Auteurs

Shao-Peng Yan (SP)

. yanshaopeng@nimte.ac.cn.

Zhi-Yu Zhu (ZY)

. zhuzhiyu@nimte.ac.cn.

Qi-Ke Jia (QK)

. jiaqike@nimte.ac.cn.

Rui-Ying Ji (RY)

. jiruiying@nimte.ac.cn.

Ya-Pin Wang (YP)

. wangyaping@nimte.ac.cn.

Dan He (D)

. hedan@nimte.ac.cn.

Rong Wang (R)

. rong.wang@nimte.ac.cn.

Yang Zhou (Y)

Ningbo Institute of Materials Technology and Engineering,CAS. zhouyang876@nimte.ac.cn.

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Classifications MeSH