| Literature DB >> 35438580 |
Qiang Zhang1, Yu-Hang Miao1, Teng Liu1, Yin-Ling Yun1, Xiao-Ya Sun1, Tao Yang2, Jie Sun1.
Abstract
3-arylcoumarins with different pharmacological properties widely exist in a variety of natural plants. The extensive research on 3-arylcoumarins was attributed to its therapeutic and relatively easy isolation. Therefore, 3-arylcoumarins can be recognised as useful structures for the design of novel compounds with potential pharmacological interest, particularly in the fields of anti-inflammatory, anti-cancer, antioxidant, Monoamine oxidase (MAO) enzyme inhibition, etc. The current review highlights the biological activities, design, and chemical synthetic methods of 3-arylcoumarins derivatives as well as their important natural product sources.Entities:
Keywords: 3-arylcoumarin derivatives; Natural product sources; bioactivity; synthesis
Mesh:
Substances:
Year: 2022 PMID: 35438580 PMCID: PMC9037183 DOI: 10.1080/14756366.2022.2058499
Source DB: PubMed Journal: J Enzyme Inhib Med Chem ISSN: 1475-6366 Impact factor: 5.756
Figure 1.3-arylcoumarin skeleton.
Source of 3-arylcoumarin.
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| 1990,2000,2002,2017 |
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Scheme 1.Perkin condensations between substituted phenyl acetic acids and ortho-hydroxylated benzal-dehydes selectively afford 3-arylcoumarins.
Scheme 2.Methodology used for synthesis of 3-phenyl coumarins.
Scheme 3.Methodology used for synthesis of compound 46.
Scheme 4.Rhodium-catalysed annulations of aldehydes with alkynes.
Scheme 5.Pd-catalysed carbonylative synthesis of 3-arylcoumarins.
Scheme 6.Zn-catalysed carbonylative synthesis of 3-arylcoumarins.
Scheme 7.Pd-catalysed carbonylative synthesis of 3-arylcoumarins.
Scheme 8.N-heterocyclic carbene catalyses the reaction to obtain 3-arylcoumarin efficiently.
Scheme 9.Synthesis of 4-amino-3-arylcoumarins from unsymmetrical benzyne precursors.
3-Arylcoumarins and their activities in recent years.
| Structure | Biological activity | Ref. |
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| Anti-tumour |
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| a: R1=R2=OCH3 |
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| Anti-proliferation activity of MCF-7 cells |
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| Anti-proliferation activity most effective in HL-60 cells |
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| Anti-tumour |
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| Anti-cancer activity |
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| Anti-tumour cytotoxic activity |
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| Anti-proliferation activity |
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| Anti-tumour |
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| 1. 28 Anti-tumour |
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| 2. 28a: Antioxidant activity |
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| Anti-inflammatory |
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| Antibacterial activity |
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| 28b: Antioxidant activity |
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| Antibacterial activity |
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| Theileria annulata enolase (TaENO) inhibitors |
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| Antioxidant activity |
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| Antioxidant activity |
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| Antioxidant activity |
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| Selective Monoamine Oxidase |
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| 74a: Adenosine affinity |
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| MAO-B Inhibitors |
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| MAO-B Inhibitors Most active compound |
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| MAO-B Inhibitors |
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| MAO-B Inhibitors |
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| Anti-inflammatory |
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| Anti-inflammatory |
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| Anti-inflammatory |
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2.Down-regulating neutrophil function |
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| Anti-inflammatory |
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| Anti-PD activity |
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| Anti-AD activity |
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| Anti-AD activity |
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| Anti-diabetic activity |
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| Antibacterial activity |
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| Antibacterial activity |
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| Tyrosinase inhibitory activity |
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| Tyrosinase inhibitory activity |
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| Anti-insect activity |
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| Adenosine affinity |
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| Anti-platelet activity |
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| Mast cell degranulation inhibitor |
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