Metal-catalyst-free, organic dye-catalyzed C3-H arylation of pyrido[1,2-]pyrimidin-4-ones using visible light irradiation was developed under mild reaction conditions. This operationally simple and direct C-H functionalization approach effectively produced biologically significant C3 arylated pyrido[1,2-]pyrimidin-4-one and thiazolo[3,2-]pyrimidin-5-one derivatives, including medicinally important endothelial cell dysfunction inhibitor and anti-inflammatory agents in good to excellent yields with good functional group tolerance. The present photoinduced direct C3-H arylation approach was suitable for scale-up synthesis.
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http://dx.doi.org/10.1021/acs.joc.3c00780 | DOI Listing |
Bioorg Med Chem
November 2023
Department of Biosciences and Bioengineering, Indian Institute of Technology Bombay, Mumbai, 400076, India; National Institute of Pharmaceutical Education and Research, SAS Nagar, Punjab, 160062, India. Electronic address:
In this study of creating new molecules from clinical trial agents, an approach of Combretastatin structural modulation with the installation of NP-privileged motifs was considered, and a series of trimethoxyphenyl-2-aminoimidazole with functionalized quinolines and isoquinolines was investigated. An exciting method of quinoline C3-H iodination coupled with imidazopyridine-C3-H arylation and hydrazine-mediated fused-ring cleavage enabled synthesizing a class of compounds with two specific unsymmetric aryl substitutions. Interestingly, three compounds (6, 11, and 13) strongly inhibited HeLa cell proliferation with a half-maximal inhibitory concentration (10-46 nM).
View Article and Find Full Text PDFChemistry
August 2023
School of Chemistry, Indian Institute of Science Education and Research, Thiruvananthapuram (IISER-TVM), 695551, India.
In the present manuscript, we reported the first visible-light-enabled direct C3-H alkylation/arylation of quinoxalin-2(1H)-ones with unactivated alkyl/aryl chlorides under metal-free conditions. A wide range of unactivated alkyl and aryl chlorides containing different functionalities are coupled with a variety of quinoxalin-2(1H)-one derivatives under mild reaction conditions to afford the C3-alkyl/aryl substituted quinoxalin-2(1H)-ones in moderate to good yields.
View Article and Find Full Text PDFJ Org Chem
July 2023
Department of Chemistry, Indian Institute of Technology Indore, Indore 453552, India.
Metal-catalyst-free, organic dye-catalyzed C3-H arylation of pyrido[1,2-]pyrimidin-4-ones using visible light irradiation was developed under mild reaction conditions. This operationally simple and direct C-H functionalization approach effectively produced biologically significant C3 arylated pyrido[1,2-]pyrimidin-4-one and thiazolo[3,2-]pyrimidin-5-one derivatives, including medicinally important endothelial cell dysfunction inhibitor and anti-inflammatory agents in good to excellent yields with good functional group tolerance. The present photoinduced direct C3-H arylation approach was suitable for scale-up synthesis.
View Article and Find Full Text PDFChemistry
September 2021
Institut für Organische und Biomolekulare Chemie and Wöhler Research Institute for Sustainable Chemistry (WISCh), Georg-August-Universität Göttingen, Tammanstraße 2, 37077, Göttingen, Germany.
Herein, we disclose a recyclable, hybrid manganese catalyst for site-selective azine C-H activation by weak amide assistance. The novel, reusable catalyst enabled C3-H arylation and C3-H alkylation with ample scope, and was characterized by detailed transmission electron microscopy analysis.
View Article and Find Full Text PDFJ Org Chem
January 2021
College of Pharmaceutical Sciences, Zhejiang University, 866 Yuhangtang Road, Hangzhou 310058, Zhejiang, P. R. China.
The regioselective arylation of inert C3-H bonds in indoles reacting with arylboronates effective copper-mediated catalysis with the aid of a facile and removable 2-pyridinylisopropyl (PIP) group without ligand participation is reported. This newly established method features high compatibility with diverse functional groups between coupling partners, including both indole substrates and arylboron reagents, consequentially leading to operational simplicity and providing access to generate the desired arylated products in good to excellent yields of up to 97%. Synthetically, the PIP-derived amide moiety could subsequently be readily removed under mild reaction conditions to produce useful indole carboxylic acids for further transformation.
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