| Literature DB >> 36046729 |
Jiadai Zhai1,2, Bingxia Sun1, Feng Sang1.
Abstract
Chalcones have a three-carbon α,β-unsaturated carbonyl system composed of two phenolic rings. Many chalcones have shown broad spectrum of biological activities with clinical potentials against various diseases. They are usually abundant in seeds, fruit skin, bark and flowers of most edible plants. Among them, chalcones bearing 2-hydroxy-3-methyl-3-butenyl (HMB) group have been reported several times in the past few decades due to their novel scaffolds and numerous interesting biological activities. In this paper, we reviewed the isolation of twelve natural chalcones and a natural chalcone-type compound bearing 2-hydroxy-3-methyl-3-butenyl group discovered so far, and reviewed their synthesis methods and biological activities reported in the literature. We anticipate that this review will inspire further research of natural chalcones.Entities:
Keywords: 2-hydroxy-3-methyl-3-butenyl; biological activity; chalcone; isolation; synthesis
Year: 2022 PMID: 36046729 PMCID: PMC9420912 DOI: 10.3389/fchem.2022.964089
Source DB: PubMed Journal: Front Chem ISSN: 2296-2646 Impact factor: 5.545
FIGURE 1Structures of natural chalcones and a chalcone-type compound bearing HMB group (1-13) and chalcone.
Plant species and biological activities of natural chalcones bearing HMB group.
| Chalcones | Plant Species | Biological Activities | References |
|---|---|---|---|
| Xanthoangelol D ( |
| NF-κB inhibitory activity |
|
| Enzyme inhibitory activity |
| ||
| Antiviral activity |
| ||
|
| |||
| Paratocarpin D ( |
| No cytotoxic or anti-inflammatory activity |
|
|
|
| ||
|
| |||
| Paratocarpin E ( |
| Cytotoxic activity |
|
|
| Anti-inflammatory activity |
| |
|
| Antibacterial activity |
| |
|
| |||
|
| |||
| Anthyllin ( |
| Unreported |
|
|
| Anti-inflammatory activity |
| |
|
| Enzyme inhibitory activity |
| |
|
| Enzyme inhibitory activity |
| |
|
| Antioxidant and cytotoxic activity |
| |
| Xanthohumol D ( |
| Enzyme inhibitory activity |
|
| Anti-inflammatory activity |
| ||
|
| Antibacterial activity |
| |
|
| |||
| Psorachalcone A ( |
| Antifungal activity |
|
|
| Enzyme inhibitory activity |
| |
|
| No antibacterial activity |
| |
|
| No cytotoxic activity |
| |
| Antibacterial activity |
| ||
| No enzyme inhibitory activity |
| ||
|
| |||
| Bartericin A |
| Antibacterial activity |
|
|
| |||
| Bartericin D ( |
| Unreported |
|
| Angusticornin A ( |
| Antibacterial activity |
|
|
| |||
| Angusticornin B ( |
| Synergistic antibacterial activity |
|
|
| |||
| chalcone |
| No antibacterial activity |
|
|
| |||
| Sanjuanolide ( |
| Cytotoxic activity |
|
|
| Cytotoxic activity |
| |
| Anti-inflammatory activity |
| ||
|
| |||
| chalcone |
| Antioxidant activity |
|
SCHEME 1(A) Synthesis of Xanthoangelol D by Li et al.; (B) Synthesis of Xanthoangelol D by Sugamoto et al.
SCHEME 2Synthesis of Paratocarpin E.
SCHEME 3(A) Synthesis of Xanthohumol D by Fu et al.; (B) Synthesis of Xanthohumol D by Sugamoto et al.
SCHEME 4(A) Synthesis of Psorachalcone A by Zhai et al.; (B) Synthesis of Psorachalcone A by Sugamoto et al.
SCHEME 5Synthesis of Bartericin A.
SCHEME 6(A) Synthesis of Angusticornin A; (B) Synthesis of Angusticornin B.
SCHEME 7Synthesis of chalcone 11.
SCHEME 8(A) Synthesis of (±)-Sanjuanolide by Zhai et al.; (B) Synthesis of (±)-Sanjuanolide by Fang et al.; (C) Synthesis of (S)-Sanjuanolide and (R)-Sanjuanolide by Fang et al.