Phytoecdysteroids from Dianthus superbus L.: Structures and anti-neuroinflammatory evaluation

Phytochemistry. 2023 Aug:212:113710. doi: 10.1016/j.phytochem.2023.113710. Epub 2023 May 12.

Abstract

Six undescribed C27-phytoecdysteroid derivatives, named superecdysones A-F, and ten known analogs were extracted from the whole plant of Dianthus superbus L. Their structures were identified by extensive spectroscopy, mass spectrometric methods, chemical transformations, chiral HPLC analysis, and the single-crystal X-ray diffraction analysis. Superecdysones A and B possess a tetrahydrofuran ring in the side chain and superecdysones C-E are rare phytoecdysones containing a (R)-lactic acid moiety, whereas superecdysone F is an uncommon B-ring-modified ecdysone. Notably, based on the variable temperature (from 333 K to 253 K) NMR experiments of superecdysone C, the missing carbon signals were visible at 253 K and assigned. The neuroinflammatory bioassay of all compounds were evaluated, and 22-acetyl-2-deoxyecdysone, 2-deoxy-20-hydroxyecdysone, 20-hydroxyecdysone, ecdysterone-22-O-benzoate, 20-hydroxyecdysone-20,22-O-R-ethylidene, and acetonide derivative 20-hydroxyecdysterone-20, 22-acetonide significantly suppressed the LPS-induced nitric oxide generation in microglia cells (BV-2), with IC50 values ranging from 6.9 to 23.0 μM. Structure-activity relationships were also discussed. Molecular docking simulations of the active compounds confirmed the possible mechanism of action against neuroinflammations. Furthermore, none compounds showed cytotoxicity against HepG2 and MCF-7. It is the first report about the occurrence and anti-neuroinflammatory activity of the phytoecdysteroids in the genus Dianthus. Our findings demonstrated that ecdysteroids may be used as potential anti-inflammatory drugs.

Keywords: Anti-neuroinflammatory activity; Bioactive; Caryophyllaceae; Dianthus superbus L.; Phytoecdysteroids; Traditional Chinese medicine.

MeSH terms

  • Dianthus* / chemistry
  • Ecdysteroids / pharmacology
  • Ecdysterone / pharmacology
  • Molecular Docking Simulation
  • Neuroinflammatory Diseases

Substances

  • Ecdysterone
  • Ecdysteroids