Affiliation:
1. Chemistry Department, Faculty of Science, Jazan University, 45142 Jazan, Saudi Arabia
2. Photochemistry Department (Heterocyclic Unit), National Research Centre, 12622 Dokki, Giza, Egypt
3. Department of Chemistry, Faculty of Science and Arts, Taibah University, Ulla, Medina, Saudi Arabia
4. Department of Chemistry, Faculty of Science, Mansoura University, 35516 Mansoura, Egypt
Abstract
Abstract:
Pyrimido [5, 4-c] quinolone derivatives are significant synthetic targets that show numerous
interesting biological activities. The pyrimido [4, 5-b] quinoline is the most famous source
of these derivatives, which has been used in medicine to antitumor and target different diseases.
Since the segregation of quinoline derivatives, many synthetic methodologies were advanced for
their synthesis. Despite the current interesting findings on this class of pyrimidoquinoline, the
chemical literature deficits a comprehensive summary of the synthetic methodologies and biological
activities of pyrimido [5, 4-c] quinoline derivatives. This review focuses on recent advances in
pyrimido [5, 4-c] quinolines chemistry via debating diverse synthetic ways developed for the preparation
of pyrimido [5, 4-c] quinolines and other unique derivatives that exhibited promising biological
activities. Also, it sheds light on the most widespread reactions of pyrimidoquinolines and
the employment of these derivatives as the essential building blocks for different biologically active
compounds:. Among these reactions used to prepare pyrimido [5, 4-c] quinoline derivatives
are the following: Biginelli-type one or three-component reaction, Micheal addition, intermolecular
cyclization, cyclo-condensation, acylation, Vielsmeir formylation, Suzuki cross-coupling reaction,
transformation, oxidation-reduction, esterification, dehydration, decarboxylation, methylation,
chlorination, alkylation.
Publisher
Bentham Science Publishers Ltd.
Cited by
1 articles.
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